Saturday, 31 October 2009

Genetic Medicine

Medical Genetics is the specialty of medicine that involves the diagnosis and management of hereditary disorders. Medical genetics differs from Human genetics in that human genetics is a field of scientific research that may or may not apply to medicine, but medical genetics refers to the application of genetics to medical care. For example, research on the causes and inheritance of genetic disorders would be considered within both human genetics and medical genetics, while the diagnosis, management, and counseling of individuals with genetic disorders would be considered part of medical genetics. In contrast, the study of typically non-medical phenotypes such as the genetics of eye color would be considered part of human genetics, but not necessarily relevant to medical genetics (except in situations such as albinism). Genetic medicine is a newer term for medical genetics and incorporates areas such as gene therapy, personalized medicine, and the rapidly emerging new medical specialty, predictive Medicine.

Scope

Medical genetics encompasses many different areas, including clinical practice of physicians, genetic counselors, and nutritionists, clinical diagnostic laboratory activities, and research into the causes and inheritance of genetic disorders. Examples of conditions that fall within the scope of medical genetics include birth defects and dysmorphology, mental retardation, autism, metabolic and mitochondrial disorders, skeletal dysplasia, connective tissue disorders, cancer genetics, teratogens, and prenatal diagnosis. Medical genetics is increasingly becoming relevant to many common diseases. Overlaps with other medical specialties are beginning to emerge, as recent advances in genetics are revealing etiologies for neurologic, endocrine, cardiovascular, pulmonary, ophthalmologic, renal, psychiatric, and dermatologic conditions.

Subspecialties

In some ways, many of the individual fields within medical genetics are hybrids between clinical care and research. This is due in part to recent advances in science and technology (for example, see the Human genome project) that have enabled an unprecedented understanding of genetic disorders.

Clinical genetics

Clinical genetics is the practice of clinical medicine with particular attention to hereditary disorders. Referrals are made to genetics clinics for a variety of reasons, including birth defects, developmental delay, autism, epilepsy, short stature, and many others. Examples of genetic syndromes that are commonly seen the genetics clinic include chromosomal rearrangements, Down syndrome, DiGeorge syndrome, Fragile X syndrome, Marfan syndrome, Neurofibromatosis, Turner syndrome, and Williams syndrome.

Genetic counseling

Genetic counseling is the process through which a genetic counselor provides information about genetic conditions, diagnostic testing, and risks in other family members, within the framework of nondirective counseling.

Metabolic/biochemical genetics

Metabolic (or biochemical) genetics involves the diagnosis and management of inborn errors of metabolism in which patients have enzymatic deficiencies that perturb biochemical pathways involved in metabolism of carbohydrates, amino acids, and lipids. Examples of metabolic disorders include galactosemia, glycogen storage disease, lysosomal storage disorders, metabolic acidosis, peroxisomal disorders, phenylketonuria, and urea cycle disorders.

Cytogenetics

Cytogenetics is the study of chromosomes and chromosome abnormalities. While cytogenetics historically relied on microscopy to analyze chromosomes, new molecular technologies such as array comparative genomic hybridization are now becoming widely used. Examples of chromosome abnormalities include aneuploidy, chromosomal rearrangements, and genomic deletion/duplication disorders.

Molecular genetics

Molecular genetics involves the discovery of and laboratory testing for DNA mutations that underlie many single gene disorders. Examples of single gene disorders include achondroplasia, cystic fibrosis, Duchenne muscular dystrophy, hereditary breast cancer (BRCA1/2), Huntington disease, Marfan syndrome, Noonan syndrome, and Rett syndrome. Molecular tests are also used in the diagnosis of syndromes involving epigenetic abnormalities, such as Angelman syndrome, Beckwith-Wiedemann syndrome, Prader-willi syndrome, and uniparental disomy.

Mitochondrial genetics

Mitochondrial genetics concerns the diagnosis and management of mitochondrial disorders, which have a molecular basis but often result in biochemical abnormalities due to deficient energy production.

There exists some overlap between medical genetic diagnostic laboratories and molecular pathology.

History

Although genetics has its roots back in the 19th century with the work of the Bohemian monk Gregor Mendel and other pioneering scientists, human genetics emerged later. It started to develop, albeit slowly, during the first half of the 20th century. Mendelian (single-gene) inheritance was studied in a number of important disorders such as albinism, brachydactyly (short fingers and toes), and hemophilia. Mathematical approaches were also devised and applied to human genetics. Population genetics was created.

Medical genetics was a late developer, emerging largely after the close of World War II (1945) when the eugenics movement had fallen into disrepute. The Nazi misuse of eugenics sounded its death knell. Shorn of eugenics, a scientific approach could be used and was applied to human and medical genetics. Medical genetics saw an increasingly rapid rise in the second half of the 20th century and continues in the 21st century.


Current practice

The clinical setting in which patients are evaluated determines the scope of practice, diagnostic, and therapeutic interventions. For the purposes of general discussion, the typical encounters between patients and genetic practitioners may involve:

  • Referral to an out-patient genetics clinic (pediatric, adult, or combined) or an in-hospital consultation, most often for diagnostic evaluation.
  • Specialty genetics clinics focusing on management of inborn errors of metabolism, skeletal dysplasia, or lysosomal storage diseases.
  • Referral for counseling in a prenatal genetics clinic to discuss risks to the pregnancy (advanced maternal age, teratogen exposure, family history of a genetic disease), test results (abnormal maternal serum screen, abnormal ultrasound), and/or options for prenatal diagnosis (typically amniocentesis or chorionic villus sampling).
  • Multidisciplinary specialty clinics that include a clinical geneticist or genetic counselor (cancer genetics, cardiovascular genetics, craniofacial or cleft lip/palate, hearing loss clinics, muscular dystrophy/neurodegenerative disorder clinics).

Diagnostic evaluation

Each patient will undergo a diagnostic evaluation tailored to their own particular presenting signs and symptoms. The geneticist will establish a differential diagnosis and recommend appropriate testing. These tests might evaluate for chromosomal disorders, inborn errors of metabolism, or single gene disorders.

Chromosome studies

Chromosome studies are used in the general genetics clinic to determine a cause for developmental delay/mental retardation, birth defects, dysmorphic features, and/or autism. Chromosome analysis is also performed in the prenatal setting to determine whether a fetus is affected with aneuploidy or other chromosome rearrangements. Finally, chromosome abnormalities are often detected in cancer samples. A large number of different methods have been developed for chromosome analysis:

  • Chromosome analysis using a karyotype involves special stains that generate light and dark bands, allowing identification of each chromosome under a microscope.
  • Fluorescence in situ hybridization (FISH) involves fluorescent labeling of probes that bind to specific DNA sequences, used for identifying aneuploidy, genomic deletions or duplications, characterizing chromosomal translocations and determining the origin of ring chromosomes.
  • Chromosome painting is a technique that uses fluorescent probes specific for each chromosome to differentially label each chromosome. This technique is more often used in cancer cytogenetics, where complex chromosome rearrangements can occur.
  • Array comparative genomic hybridization is a new molecular technique that involves hybridization of an individual DNA sample to a glass slide or microarray chip containing molecular probes (ranging from large ~200kb bacterial artificial chromosomes to small oligonucleotides) that represent unique regions of the genome. This method is particularly sensitive for detection of genomic gains or losses across the genome but does not detect balanced translocations or distinguish the location of duplicated genetic material (for example, a tandem duplication versus an insertional duplication).

Basic metabolic studies

Biochemical studies are performed to screen for imbalances of metabolites in the bodily fluid, usually the blood (plasma/serum) or urine, but also in cerebrospinal fluid (CSF). Specific tests of enzyme function (either in leukocytes, skin fibroblasts, liver, or muscle) are also employed under certain circumstances. In the US, the newborn screen incorporates biochemical tests to screen for treatable conditions such as galactosemia and phenylketonuria (PKU). Patients suspected to have a metabolic condition might undergo the following tests:

  • Quantitative amino acid analysis is typically performed using the ninhydrin reaction, followed by liquid chromatography to measure the amount of amino acid in the sample (either urine, plasma/serum, or CSF). Measurement of amino acids in plasma or serum is used in the evaluation of disorders of amino acid metabolism such as urea cycle disorders, maple syrup urine disease, and PKU. Measurement of amino acids in urine can be useful in the diagnosis of cystinuria or renal Fanconi syndrome as can be seen in cystinosis.
  • Urine organic acid analysis can be either performed using quantitative or qualitative methods, but in either case the test is used to detect the excretion of abnormal organic acids. These compounds are normally produced during bodily metabolism of amino acids and odd-chain fatty acids, but accumulate in patients with certain metabolic conditions.
  • The acylcarnitine combination profile detects compounds such as organic acids and fatty acids conjugated to carnitine. The test is used for detection of disorders involving fatty acid metabolism, including MCAD.
  • Pyruvate and lactate are byproducts of normal metabolism, particularly during anaerobic metabolism. These compounds normally accumulate during exercise or ischemia, but are also elevated in patients with disorders of pyruvate metabolism or mitochondrial disorders.
  • Ammonia is an end product of amino acid metabolism and is converted in the liver to urea through a series of enzymatic reactions termed the urea cycle. Elevated ammonia can therefore be detected in patients with urea cycle disorders, as well as other conditions involving liver failure.
  • Enzyme testing is performed for a wide range of metabolic disorders to confirm a diagnosis suspected based on screening tests.

Molecular studies

Treatments

Each cell of the body contains the hereditary information (DNA) wrapped up in structures called chromosomes. Since genetic syndromes are typically the result of alterations of the chromosomes or genes, there is no treatment currently available that can correct the genetic alterations in every cell of the body. Therefore, there is currently no "cure" for genetic disorders. However, for many genetic syndromes there is treatment available to manage the symptoms. In some cases, particularly inborn errors of metabolism, the mechanism of disease is well understood and offers the potential for dietary and medical management to prevent or reduce the long-term complications. In other cases, infusion therapy is used to replace the missing enzyme. Current research is actively seeking to use gene therapy or other new medications to treat specific genetic disorders.

Management of Metabolic disorders

In general, metabolic disorders arise from enzyme deficiencies that disrupt normal metabolic pathways. For instance, in the hypothetical example:

    A ---> B ---> C ---> D         AAAA ---> BBBBBB ---> CCCCCCCCCC ---> (no D)
X Y Z X Y (no Z)

Compound "A" is metabolized to "B" by enzyme "X", compound "B" is metabolized to "C" by enzyme "Y", and compound "C" is metabolized to "D" by enzyme "Z". If enzyme "Z" is missing, compound "D" will be missing, while compounds "A", "B", and "C" will build up. The pathogenesis of this particular condition could result from lack of compound "D", if it is critical for some cellular function, or from toxicity due to excess "A", "B", and/or "C". Treatment of the metabolic disorder could be achieved through dietary supplementation of compound "D" and dietary restriction of compounds "A", "B", and/or "C" or by treatment with a medication that promoted disposal of excess "A", "B", or "C". Another approach that can be taken is enzyme replacement therapy, in which a patient is given an infusion of the missing enzyme.

  • Diet

Dietary restriction and supplementation are key measures taken in several well-known metabolic disorders, including galactosemia, phenylketonuria (PKU), maple syrup urine disease, organic acidurias and urea cycle disorders. Such restrictive diets can be difficult for the patient and family to maintain, and require close consultation with a nutritionist who has special experience in metabolic disorders. The composition of the diet will change depending on the caloric needs of the growing child and special attention is needed during a pregnancy if a woman is affected with one of these disorders.

  • Medication

Medical approaches include enhancement of residual enzyme activity (in cases where the enzyme is made but is not functioning properly), inhibition of other enzymes in the biochemical pathway to prevent buildup of a toxic compound, or diversion of a toxic compound to another form that can be excreted. Examples include the use of high doses of pyridoxine (vitamin B6) in some patients with homocystinuria to boost the activity of the residual cystathione synthase enzyme, administration of biotin to restore activity of several enzymes affected by deficiency of biotinidase, treatment with NTBC in Tyrosinemia to inhibit the production of succinylacetone which causes liver toxicity, and the use of sodium benzoate to decrease ammonia build-up in urea cycle disorders.

Certain lysosomal storage diseases are treated with infusions of a recombinant enzyme (produced in a laboratory), which can reduce the accumulation of the compounds in various tissues. Examples include Gaucher disease, Fabry disease, Mucopolysaccharidoses and Glycogen storage disease type II. Such treatments are limited by the ability of the enzyme to reach the affected areas (the blood brain barrier prevents enzyme from reaching the brain, for example), and can sometimes be associated with allergic reactions. The long-term clinical effectiveness of enzyme replacement therapies vary widely among different disorders.

Other examples

  • Angiotensin receptor blockers in Marfan syndrome & Loeys-Dietz
  • Bone marrow transplantation
  • Gene therapy

Molecular medicine

Molecular medicine is a broad field, where physical, chemical, biological and medical techniques are used to describe molecular structures and mechanisms, identify fundamental molecular and genetic errors of disease, and to develop molecular interventions to correct them. The molecular medicine perspective emphasizes cellular and molecular phenomena and interventions rather than the previous conceptual and observational focus on patients and their organs.[1]

In November, 1949, with the seminal paper, "Sickle Cell Anemia, a Molecular Disease",[2] in Science magazine, Linus Pauling, Harvey Itano and their collaborators laid the groundwork for establishing the field of molecular medicine.[3] In 1956, Roger J. Williams wrote Biochemical Individuality,[4] a prescient book about genetics, prevention and treatment of disease on a molecular basis, and nutrition which is now variously referred to as individualized medicine[5] and orthomolecular medicine.[6] Another paper in Science by Pauling in 1968,[7] introduced and defined this view of molecular medicine that focuses on natural and nutritional substances used for treatment and prevention.

Published research and progress was slow until the 1970s' "biological revolution" that introduced many new techniques and commercial applications.[8]

Molecular medicine is a new scientific discipline in European universities. Combining contemporary medical studies with the field of biochemistry, it offers a bridge between the two subjects. At present only a handful of universities offer the course to undergraduates. With a degree in this discipline the graduate is able to pursue a career in medical sciences, scientific research, laboratory work and postgraduate medical degrees.

The Medal for Medcine

The Nobel Prize Medal for Physiology or Medicine

Medal
Registered trademark of the Nobel Foundation

The medal of the Nobel Assembly at the Karolinska Institute represents the Genius of Medicine holding an open book in her lap, collecting the water pouring out from a rock in order to quench a sick girl's thirst.

The inscription reads:

Inventas vitam juvat excoluisse per artes

loosely translated "And they who bettered life on earth by their newly found mastery."
(Word for word: inventions enhance life which is beautified through art.)

The words are taken from Vergilius Aeneid, the 6th song, verse 663;

Lo, God-loved poets, men who spake things worthy Phoebus' heart;
and they who bettered life on earth by new-found mastery


The name of the laureate is engraved on the plate below the figures, and the text "REG. UNIVERSITAS MED. CHIR. CAROL." stands for the Karolinska Institute.

The Nobel Prize Medal for Physiology or Medicine was designed by Erik Lindberg.



The Nobel Prize in Physiology or Medicine (Swedish: Nobelpriset i fysiologi eller medicin) is awarded once a year by the Swedish Karolinska Institute. It is one of the five Nobel Prizes established by the will of Alfred Nobel in 1895, awarded for outstanding contributions in Physics, Chemistry, Literature, Peace, and Physiology or Medicine since 1901. The first Nobel Prize in Physiology or Medicine was awarded in 1901 to the German physiologist Emil Adolf von Behring, "for his work on serum therapy, especially its application against diphtheria, by which he has opened a new road in the domain of biological science and thereby placed in the hands of the physician a victorious weapon against illness and deaths." This award is administered by the Nobel Foundation and widely regarded as the most prestigious award that a scientist can receive in these fields. It is presented in Stockholm at an annual ceremony on December 10, the anniversary of Nobel's death. "The highlight of the Nobel Prize Award Ceremony in Stockholm is when each Nobel Laureate steps forward to receive the prize from the hands of His Majesty the King of Sweden. ... Under the eyes of a watching world, the Nobel Laureate receives three things: a diploma, a medal and a document confirming the prize amount".[1]

In 2009 the Nobel Prize in Physiology or Medicine was awarded to Elizabeth Blackburn, Carol W. Greider and Jack W. Szostak of the United States "for the discovery of how chromosomes are protected by telomeres and the enzyme telomerase"; they share the prize amount of 10,000,000 SEK (slightly more than 1 million, or US$1.4 million). The front side of "The medal of the Nobel Assembly at the Karolinska Institute" provides the same profile of Alfred Nobel depicted on the medals for Physics, Chemistry, and Literature; its reverse side "represents the Genius of Medicine holding an open book in her lap, collecting the water pouring out from a rock in order to quench a sick girl's thirst".[2]

Nomination and selection

A maximum of three Nobel Laureates and two different works may be selected for the Nobel Prize in Physiology or Medicine.[3]

These Nobel Laureates are decided upon by the Nobel Assembly at Karolinska Institutet, a body of 50 professors of the Karolinska Institute. The working body of the Assembly involved in screening candidates is a Nobel Committee that consists of five members elected by the Nobel Assembly.[4]In its first stage, several thousand people are asked to nominate candidates. These names are scrutinized and discussed by experts until only the winners remain.

Forms, which amount to a personal and exclusive invitation, are sent to about three thousand selected individuals to invite them to submit nominations. The names of the nominees are never publicly announced, and neither are they told that they have been considered for the Prize. Nomination records are sealed for fifty years. In practice some nominees do become known. It is also common for publicists to make such a claim, founded or not.

The nominations are screened by committee, and a list is produced of approximately two hundred preliminary candidates. This list is forwarded to selected experts in the field. They remove all but approximately fifteen names. The committee submits a report with recommendations to the appropriate institution.

While posthumous nominations are not permitted, awards can occur if the individual died in the months between the nomination and the decision of the prize committee.


The Award

The Nobel Prize in Physiology consists of a gold medallion (the Nobel Prize Medal for Physiology or Medicine), a diploma, and a monetary grant.[3] The Nobel Prize Medals, which have been minted in Sweden since 1902, are registered trademarks of the Nobel Foundation. Their engraved designs are internationally-recognized symbols of the prestige of the Nobel Prize.

The front side (obverse) of the Nobel Prize Medals for Physics, Chemistry, Literature, and Physiology or Medicine (for the "Swedish Prizes") features the same engraved profile of Alfred Nobel with his name abbreviated as "Alfr. Nobel" to the left of his profile and the dates of his birth and death to the right of it (in capital letters and Roman numerals).[3]

The grant is currently approximately 10 million SEK, slightly more than 1 million (US$1.6 million or £0.8 million ).[3][5]




All Nobel Laureates in Medicine

All Nobel Laureates in Medicine
The Nobel Prize in Physiology or Medicine has been awarded 100 times to 195 Nobel Laureates between 1901 and 2009. Click on each name to see the Nobel Laureate's page.

Nobel Prize in Medicine

Laureates

Year Laureate[A] Country[B] Rationale[C]
1901 EmilVonBehring.jpg Emil Adolf von Behring Germany "for his work on serum therapy, especially its application against diphtheria, by which he has opened a new road in the domain of medical science and thereby placed in the hands of the physician a victorious weapon against illness and deaths"[9]
1902 Ronald Ross2.jpg Ronald Ross United Kingdom "for his work on malaria, by which he has shown how it enters the organism and thereby has laid the foundation for successful research on this disease and methods of combating it"[10]
1903 Niels ryberg.jpg Niels Ryberg Finsen Denmark "[for] his contribution to the treatment of diseases, especially lupus vulgaris, with concentrated light radiation, whereby he has opened a new avenue for medical science"[11]
1904 Ivan Pavlov (Nobel).png Ivan Petrovich Pavlov Russia "in recognition of his work on the physiology of digestion, through which knowledge on vital aspects of the subject has been transformed and enlarged"[12]
1905 RobertKoch cropped.jpg Robert Koch Germany "for his investigations and discoveries in relation to tuberculosis"[13]
1906 Camillo Golgi (Nobel 1906).png Camillo Golgi Italy "in recognition of their work on the structure of the nervous system"[14]
Cajal-mi.jpg Santiago Ramón y Cajal Spain
1907
Charles Louis Alphonse Laveran France "in recognition of his work on the role played by protozoa in causing diseases"[15]
1908 Ilya Mechnikov (Nobel 1908).png Ilya Ilyich Mechnikov Russia "in recognition of their work on immunity"[16]
Paul Ehrlich.png Paul Ehrlich Germany
1909 Emil Theodor Kocher.jpg Emil Theodor Kocher Switzerland "for his work on the physiology, pathology and surgery of the thyroid gland"[17]
1910
Albrecht Kossel Germany "in recognition of the contributions to our knowledge of cell chemistry made through his work on proteins, including the nucleic substances"[18]
1911 Allvar Gullstrand.jpg Allvar Gullstrand Sweden "for his work on the dioptrics of the eye"[19]
1912 Alexis Carrel 02.jpg Alexis Carrel France "[for] his work on vascular suture and the transplantation of blood vessels and organs"[20]
1913 Charles Robert Richet.gif Charles Richet France "[for] his work on anaphylaxis"[21]
1914 Robert Barany.jpg Robert Bárány Austria "for his work on the physiology and pathology of the vestibular apparatus"[22]
1915 Not awarded
1916
1917
1918
1919 Jules Bordet pi.png Jules Bordet Belgium "for his discoveries relating to immunity"[23]
1920 August Krogh Bain 32006.jpg Schack August Steenberg Krogh Denmark "for his discovery of the capillary motor regulating mechanism"[24]
1921 Not awarded
1922 Archibald Vivian Hill.jpg Archibald Vivian Hill United Kingdom "for his discovery relating to the production of heat in the muscle"[25]

Otto Fritz Meyerhof Germany "for his discovery of the fixed relationship between the consumption of oxygen and the metabolism of lactic acid in the muscle"[25]
1923 Fredrick banting.jpg Frederick Grant Banting Canada "for the discovery of insulin"[26]
J.J.R. Macleod ca. 1928.png John James Richard Macleod Canada
1924 Willem Einthoven.jpg Willem Einthoven The Netherlands "for the discovery of the mechanism of the electrocardiogram"[27]
1925 Not awarded
1926 J Fibiger.jpg Johannes Andreas Grib Fibiger Denmark "for his discovery of the Spiroptera carcinoma"[28]
1927
Julius Wagner-Jauregg Austria "for his discovery of the therapeutic value of malaria inoculation in the treatment of dementia paralytica"[29]
1928 Jules NICOLE.jpeg Charles Jules Henri Nicolle France "for his work on typhus"[30]
1929 Christiaan Eijkman.jpg Christiaan Eijkman The Netherlands "for his discovery of the antineuritic vitamin"[31]
Frederick Gowland Hopkins.jpg Sir Frederick Gowland Hopkins United Kingdom "for his discovery of the growth-stimulating vitamins"[31]
1930
Karl Landsteiner Austria "for his discovery of human blood groups"[32]
1931
Otto Heinrich Warburg Germany "for his discovery of the nature and mode of action of the respiratory enzyme"[33]
1932 Charles Scott Sherrington1.jpg Sir Charles Scott Sherrington United Kingdom "for their discoveries regarding the functions of neurons"[34]

Edgar Douglas Adrian United Kingdom
1933 Thomas Hunt Morgan.jpg Thomas Hunt Morgan United States "for his discoveries concerning the role played by the chromosome in heredity"[35]
1934
George Hoyt Whipple United States "for their discoveries concerning liver therapy in cases of anaemia"[36]
George Richards Minot United States
William Parry Murphy United States
1935
Hans Spemann Germany "for his discovery of the organizer effect in embryonic development"[37]
1936
Sir Henry Hallett Dale United Kingdom "for their discoveries relating to chemical transmission of nerve impulses"[38]
Otto Loewi 1955 Woods Hole MA.JPG Otto Loewi Austria
1937 GyorgyiNIH.jpg Albert Szent-Györgyi von Nagyrapolt Hungary "for his discoveries in connection with the biological combustion processes, with special reference to vitamin C and the catalysis of fumaric acid"[39]
1938
Corneille Jean François Heymans Belgium "for the discovery of the role played by the sinus and aortic mechanisms in the regulation of respiration"[40]
1939
Gerhard Domagk Germany "for the discovery of the antibacterial effects of prontosil"[41]
1940 Not awarded
1941
1942
1943
Carl Peter Henrik Dam Denmark "for his discovery of vitamin K"[42]

Edward Adelbert Doisy United States "for his discovery of the chemical nature of vitamin K"[42]
1944
Joseph Erlanger United States "for their discoveries relating to the highly differentiated functions of single nerve fibres"[43]
Herbert Spencer Gasser United States
1945 Alexander Fleming.jpg Sir Alexander Fleming United Kingdom "for the discovery of penicillin and its curative effect in various infectious diseases"[44]
Ernst Boris Chain.jpg Ernst Boris Chain United Kingdom
Howard Florey.png Howard Walter Florey Australia
1946
Hermann Joseph Muller United States "for the discovery of the production of mutations by means of X-ray irradiation"[45]
1947 Carl Ferdinand Cori.jpg Carl Ferdinand Cori United States "for their discovery of the course of the catalytic conversion of glycogen"[46]
Gerty Theresa Cori.jpg Gerty Theresa Cori, née Radnitz United States
Bernado Houssay.JPG Bernardo Alberto Houssay Argentina "for his discovery of the part played by the hormone of the anterior pituitary lobe in the metabolism of sugar"[46]
1948
Paul Hermann Müller Switzerland "for his discovery of the high efficiency of DDT as a contact poison against several arthropods"[47]
1949
Walter Rudolf Hess Switzerland "for his discovery of the functional organization of the interbrain as a coordinator of the activities of the internal organs"[48]
Moniz.jpg Antonio Caetano De Abreu Freire Egas Moniz Portugal "for his discovery of the therapeutic value of lobotomy in certain psychoses"[48]
1950
Philip Showalter Hench United States "for their discoveries relating to the hormones of the adrenal cortex, their structure and biological effects"[49]

Edward Calvin Kendall United States

Tadeusz Reichstein Switzerland
1951
Max Theiler Union of South Africa "for his discoveries concerning yellow fever and how to combat it"[50]
1952 Selman Waksman NYWTS.jpg Selman Abraham Waksman United States "for his discovery of streptomycin, the first antibiotic effective against tuberculosis"[51]
1953
Hans Adolf Krebs United Kingdom "for his discovery of the citric acid cycle"[52]
Portrait of Fritz Albert Lipmann (1899-1986), Biochemist (2551001689).jpg Fritz Albert Lipmann United States "for his discovery of co-enzyme A and its importance for intermediary metabolism"[52]
1954
John Franklin Enders United States "for their discovery of the ability of poliomyelitis viruses to grow in cultures of various types of tissue"[53]
Frederick Chapman Robbins United States
Thomas Huckle Weller United States
1955
Axel Hugo Theodor Theorell Sweden "for his discoveries concerning the nature and mode of action of oxidation enzymes"[54]
1956
André Frédéric Cournand United States "for their discoveries concerning heart catheterization and pathological changes in the circulatory system"[55]

Werner Forssmann Federal Republic of Germany

Dickinson W. Richards United States
1957
Daniel Bovet Italy "for his discoveries relating to synthetic compounds that inhibit the action of certain body substances, and especially their action on the vascular system and the skeletal muscles"[56]
1958 George W. Beadle.jpg George Wells Beadle United States "for their discovery that genes act by regulating definite chemical events"[57]
Edward Lawrie Tatum.jpg Edward Lawrie Tatum United States

Joshua Lederberg United States "for his discoveries concerning genetic recombination and the organization of the genetic material of bacteria"[57]
1959 Arthur Kornberg.jpg Arthur Kornberg United States "for their discovery of the mechanisms in the biological synthesis of ribonucleic acid and deoxyribonucleic acid"[58]

Severo Ochoa United States
1960 Burnet 2jpg.jpg Sir Frank Macfarlane Burnet Australia "for discovery of acquired immunological tolerance"[59]

Peter Brian Medawar United Kingdom
1961
Georg von Békésy United States "for his discoveries of the physical mechanism of stimulation within the cochlea"[60]
1962 Francis Crick.png Francis Harry Compton Crick United Kingdom "for their discoveries concerning the molecular structure of nucleic acids and its significance for information transfer in living material"[61]
JamesDWatson.jpg James Dewey Watson United States

Maurice Hugh Frederick Wilkins New Zealand
United Kingdom
1963
Sir John Carew Eccles Australia "for their discoveries concerning the ionic mechanisms involved in excitation and inhibition in the peripheral and central portions of the nerve cell membrane"[62]
Alan L. Hodgkin.jpg Alan Lloyd Hodgkin United Kingdom
Andrew huxley trinity.png Andrew Fielding Huxley United Kingdom
1964
Konrad Bloch United States "for their discoveries concerning the mechanism and regulation of the cholesterol and fatty acid metabolism"[63]
Feodor Lynen Federal Republic of Germany
1965
François Jacob France "for their discoveries concerning genetic control of enzyme and virus synthesis"[64]
André Lwoff France
Jacques Monod France
1966
Peyton Rous United States "for his discovery of tumour-inducing viruses"[65]
Charles Brenton Huggins United States "for his discoveries concerning hormonal treatment of prostatic cancer"[65]
1967
Ragnar Granit Sweden "for their discoveries concerning the primary physiological and chemical visual processes in the eye"[66]
Haldan Keffer Hartline United States
George Wald United States
1968 Robert W. Holley..jpg Robert W. Holley United States "for their interpretation of the genetic code and its function in protein synthesis"[67]
Har Gobind Khorana.jpg Har Gobind Khorana India
MNirenberg.jpg Marshall W. Nirenberg United States
1969 Max Delbruck.jpg Max Delbrück United States "for their discoveries concerning the replication mechanism and the genetic structure of viruses"[68]
Alfred D. Hershey 1969.jpg Alfred D. Hershey United States

Salvador E. Luria United States
1970 Axelrod01.jpg Julius Axelrod United States "for their discoveries concerning the humoral transmittors in the nerve terminals and the mechanism for their storage, release and inactivation"[69]

Ulf von Euler Sweden

Sir Bernard Katz United Kingdom
1971
Earl W. Sutherland, Jr. United States "for his discoveries concerning the mechanisms of the action of hormones"[70]
1972
Gerald M. Edelman United States "for their discoveries concerning the chemical structure of antibodies"[71]
Rodney R. Porter United Kingdom
1973
Karl von Frisch Federal Republic of Germany "for their discoveries concerning organization and elicitation of individual and social behaviour patterns"[72]
Nikolaas Tinbergen (left), Konrad Lorenz (right) Konrad Lorenz Austria
Nikolaas Tinbergen United Kingdom
1974
Albert Claude Belgium "for their discoveries concerning the structural and functional organization of the cell"[73]
Christian de Duve Belgium
George E. Palade United States
1975 DavidBaltimore2008.JPG David Baltimore United States "for their discoveries concerning the interaction between tumour viruses and the genetic material of the cell"[74]
Renato Dulbecco in 1966.jpg Renato Dulbecco United States
Howard M. Temin.jpg Howard Martin Temin United States
1976
Baruch S. Blumberg United States "for their discoveries concerning new mechanisms for the origin and dissemination of infectious diseases"[75]

D. Carleton Gajdusek United States
1977
Roger Guillemin United States "for their discoveries concerning the peptide hormone production of the brain"[76]
Schally portrait.jpg Andrew V. Schally United States

Rosalyn Yalow United States "for the development of radioimmunoassays of peptide hormones"[76]
1978 Werner Arber 2008.jpg Werner Arber Switzerland "for the discovery of restriction enzymes and their application to problems of molecular genetics"[77]

Daniel Nathans United States
Hamilton Smith.jpg Hamilton O. Smith United States
1979
Allan M. Cormack United States "for the development of computer assisted tomography"[78]

Godfrey N. Hounsfield United Kingdom
1980 Barujbenacerraf.gif Baruj Benacerraf United States "for their discoveries concerning genetically determined structures on the cell surface that regulate immunological reactions"[79]

Jean Dausset France

George D. Snell United States
1981
Roger W. Sperry United States "for his discoveries concerning the functional specialization of the cerebral hemispheres"[80]

David H. Hubel United States "for their discoveries concerning information processing in the visual system"[80]

Torsten N. Wiesel Sweden
1982
Sune K. Bergström Sweden "for their discoveries concerning prostaglandins and related biologically active substances"[81]

Bengt I. Samuelsson Sweden

John R. Vane United Kingdom
1983
Barbara McClintock United States "for her discovery of mobile genetic elements"[82]
1984
Niels K. Jerne Denmark "for theories concerning the specificity in development and control of the immune system and the discovery of the principle for production of monoclonal antibodies"[83]

Georges J.F. Köhler Federal Republic of Germany

César Milstein Argentina
United Kingdom
1985 Mike Brown 2003.jpg Michael S. Brown United States "for their discoveries concerning the regulation of cholesterol metabolism"[84]
Joe Goldstein.JPG Joseph L. Goldstein United States
1986 Stanley Cohen-Biochemist.jpg Stanley Cohen United States "for their discoveries of growth factors"[85]
Rita Levi-Montalcini in 1965.jpg Rita Levi-Montalcini Italy
United States
1987
Susumu Tonegawa Japan "for his discovery of the genetic principle for generation of antibody diversity"[86]
1988
Sir James W. Black United Kingdom "for their discoveries of important principles for drug treatment"[87]
Gertrude B. Elion United States
George H. Hitchings United States
1989
J. Michael Bishop United States "for their discovery of the cellular origin of retroviral oncogenes"[88]
Harold E. Varmus United States
1990
Joseph E. Murray United States "for their discoveries concerning organ and cell transplantation in the treatment of human disease"[89]
E. Donnall Thomas United States
1991 Erwin neher 2007 lindau.jpg Erwin Neher Federal Republic of Germany "for their discoveries concerning the function of single ion channels in cells"[90]

Bert Sakmann Federal Republic of Germany
1992
Edmond H. Fischer Switzerland
United States
"for their discoveries concerning reversible protein phosphorylation as a biological regulatory mechanism"[91]
Edwin G. Krebs United States
1993
Richard J. Roberts United Kingdom "for their discoveries of split genes"[92]
Phillip A. Sharp United States
1994
Alfred G. Gilman United States "for their discovery of G-proteins and the role of these proteins in signal transduction in cells"[93]
Martin Rodbell United States
1995
Edward B. Lewis United States "for their discoveries concerning the genetic control of early embryonic development"[94]
Christiane Nüsslein-Volhard mg 4383.jpg Christiane Nüsslein-Volhard Federal Republic of Germany
Eric F. Wieschaus.jpg Eric F. Wieschaus United States
1996
Peter C. Doherty Australia "for their discoveries concerning the specificity of the cell mediated immune defence"[95]
Rolf M. Zinkernagel Switzerland
1997
Stanley B. Prusiner United States "for his discovery of Prions - a new biological principle of infection"[96]
1998
Robert F. Furchgott United States "for their discoveries concerning nitric oxide as a signalling molecule in the cardiovascular system"[97]

Louis J. Ignarro United States
Ferid Murad.jpg Ferid Murad United States
1999 Gunter Blobel 2008 1.JPG Günter Blobel United States "for the discovery that proteins have intrinsic signals that govern their transport and localization in the cell"[98]
2000
Arvid Carlsson Sweden "for their discoveries concerning signal transduction in the nervous system"[99]
Paul Greengard United States
Eric Richard Kandel.jpg Eric R. Kandel United States
2001
Leland H. Hartwell United States "for their discoveries of key regulators of the cell cycle"[100]
Tim hunt.jpg Tim Hunt United Kingdom
Plos nurse.jpg Sir Paul M. Nurse United Kingdom
2002
Sydney Brenner United Kingdom "for their discoveries concerning 'genetic regulation of organ development and programmed cell death'"[101]

H. Robert Horvitz United States
Plos sulston.jpg John E. Sulston United Kingdom
2003
Paul Lauterbur United States "for their discoveries concerning magnetic resonance imaging"[102]
Peter Mansfield Leipzig.jpg Sir Peter Mansfield United Kingdom
2004
Richard Axel United States "for their discoveries of odorant receptors and the organization of the olfactory system"[103]
LindaBuck cropped 1.jpg Linda B. Buck United States
2005
Barry J. Marshall Australia "for their discovery of the bacterium Helicobacter pylori and its role in gastritis and peptic ulcer disease"[104]
J. Robin Warren Australia
2006 Andrew Fire, Stanford University.jpg Andrew Z. Fire United States "for their discovery of RNA interference - gene silencing by double-stranded RNA"[105]

Craig C. Mello United States
2007 Mario Capecchi UTHSCSA.JPG Mario R. Capecchi United States "for their discoveries of principles for introducing specific gene modifications in mice by the use of embryonic stem cells."[106]
Martin Evans Nobel Prize.jpg Sir Martin J. Evans United Kingdom

Oliver Smithies United States
2008 Harald zur Hausen-press conference Dec 06th, 2008-6.jpg Harald zur Hausen Germany "for his discovery of human papilloma viruses causing cervical cancer"[107]
Françoise Barré-Sinoussi-press conference Dec 06th, 2008-1.jpg Françoise Barré-Sinoussi France "for their discovery of human immunodeficiency virus"[107]
LucMontagnier1995 065.jpg Luc Montagnier France
2009 Elizabeth Blackburn 2009-01.JPG Elizabeth H. Blackburn United States
Australia
"for the discovery of how chromosomes are protected by telomeres and the enzyme telomerase"[108]
Carol Greider 2009-01.JPG Carol W. Greider United States
JSzostak.jpg Jack W. Szostak United States
United Kingdom

Laureates

Year Laureate[A] Country[B] Rationale[C]
1901 EmilVonBehring.jpg Emil Adolf von Behring Germany "for his work on serum therapy, especially its application against diphtheria, by which he has opened a new road in the domain of medical science and thereby placed in the hands of the physician a victorious weapon against illness and deaths"[9]
1902 Ronald Ross2.jpg Ronald Ross United Kingdom "for his work on malaria, by which he has shown how it enters the organism and thereby has laid the foundation for successful research on this disease and methods of combating it"[10]
1903 Niels ryberg.jpg Niels Ryberg Finsen Denmark "[for] his contribution to the treatment of diseases, especially lupus vulgaris, with concentrated light radiation, whereby he has opened a new avenue for medical science"[11]
1904 Ivan Pavlov (Nobel).png Ivan Petrovich Pavlov Russia "in recognition of his work on the physiology of digestion, through which knowledge on vital aspects of the subject has been transformed and enlarged"[12]
1905 RobertKoch cropped.jpg Robert Koch Germany "for his investigations and discoveries in relation to tuberculosis"[13]
1906 Camillo Golgi (Nobel 1906).png Camillo Golgi Italy "in recognition of their work on the structure of the nervous system"[14]
Cajal-mi.jpg Santiago Ramón y Cajal Spain
1907
Charles Louis Alphonse Laveran France "in recognition of his work on the role played by protozoa in causing diseases"[15]
1908 Ilya Mechnikov (Nobel 1908).png Ilya Ilyich Mechnikov Russia "in recognition of their work on immunity"[16]
Paul Ehrlich.png Paul Ehrlich Germany
1909 Emil Theodor Kocher.jpg Emil Theodor Kocher Switzerland "for his work on the physiology, pathology and surgery of the thyroid gland"[17]
1910
Albrecht Kossel Germany "in recognition of the contributions to our knowledge of cell chemistry made through his work on proteins, including the nucleic substances"[18]
1911 Allvar Gullstrand.jpg Allvar Gullstrand Sweden "for his work on the dioptrics of the eye"[19]
1912 Alexis Carrel 02.jpg Alexis Carrel France "[for] his work on vascular suture and the transplantation of blood vessels and organs"[20]
1913 Charles Robert Richet.gif Charles Richet France "[for] his work on anaphylaxis"[21]
1914 Robert Barany.jpg Robert Bárány Austria "for his work on the physiology and pathology of the vestibular apparatus"[22]
1915 Not awarded
1916
1917
1918
1919 Jules Bordet pi.png Jules Bordet Belgium "for his discoveries relating to immunity"[23]
1920 August Krogh Bain 32006.jpg Schack August Steenberg Krogh Denmark "for his discovery of the capillary motor regulating mechanism"[24]
1921 Not awarded
1922 Archibald Vivian Hill.jpg Archibald Vivian Hill United Kingdom "for his discovery relating to the production of heat in the muscle"[25]

Otto Fritz Meyerhof Germany "for his discovery of the fixed relationship between the consumption of oxygen and the metabolism of lactic acid in the muscle"[25]
1923 Fredrick banting.jpg Frederick Grant Banting Canada "for the discovery of insulin"[26]
J.J.R. Macleod ca. 1928.png John James Richard Macleod Canada
1924 Willem Einthoven.jpg Willem Einthoven The Netherlands "for the discovery of the mechanism of the electrocardiogram"[27]
1925 Not awarded
1926 J Fibiger.jpg Johannes Andreas Grib Fibiger Denmark "for his discovery of the Spiroptera carcinoma"[28]
1927
Julius Wagner-Jauregg Austria "for his discovery of the therapeutic value of malaria inoculation in the treatment of dementia paralytica"[29]
1928 Jules NICOLE.jpeg Charles Jules Henri Nicolle France "for his work on typhus"[30]
1929 Christiaan Eijkman.jpg Christiaan Eijkman The Netherlands "for his discovery of the antineuritic vitamin"[31]
Frederick Gowland Hopkins.jpg Sir Frederick Gowland Hopkins United Kingdom "for his discovery of the growth-stimulating vitamins"[31]
1930
Karl Landsteiner Austria "for his discovery of human blood groups"[32]
1931
Otto Heinrich Warburg Germany "for his discovery of the nature and mode of action of the respiratory enzyme"[33]
1932 Charles Scott Sherrington1.jpg Sir Charles Scott Sherrington United Kingdom "for their discoveries regarding the functions of neurons"[34]

Edgar Douglas Adrian United Kingdom
1933 Thomas Hunt Morgan.jpg Thomas Hunt Morgan United States "for his discoveries concerning the role played by the chromosome in heredity"[35]
1934
George Hoyt Whipple United States "for their discoveries concerning liver therapy in cases of anaemia"[36]
George Richards Minot United States
William Parry Murphy United States
1935
Hans Spemann Germany "for his discovery of the organizer effect in embryonic development"[37]
1936
Sir Henry Hallett Dale United Kingdom "for their discoveries relating to chemical transmission of nerve impulses"[38]
Otto Loewi 1955 Woods Hole MA.JPG Otto Loewi Austria
1937 GyorgyiNIH.jpg Albert Szent-Györgyi von Nagyrapolt Hungary "for his discoveries in connection with the biological combustion processes, with special reference to vitamin C and the catalysis of fumaric acid"[39]
1938
Corneille Jean François Heymans Belgium "for the discovery of the role played by the sinus and aortic mechanisms in the regulation of respiration"[40]
1939
Gerhard Domagk Germany "for the discovery of the antibacterial effects of prontosil"[41]
1940 Not awarded
1941
1942
1943
Carl Peter Henrik Dam Denmark "for his discovery of vitamin K"[42]

Edward Adelbert Doisy United States "for his discovery of the chemical nature of vitamin K"[42]
1944
Joseph Erlanger United States "for their discoveries relating to the highly differentiated functions of single nerve fibres"[43]
Herbert Spencer Gasser United States
1945 Alexander Fleming.jpg Sir Alexander Fleming United Kingdom "for the discovery of penicillin and its curative effect in various infectious diseases"[44]
Ernst Boris Chain.jpg Ernst Boris Chain United Kingdom
Howard Florey.png Howard Walter Florey Australia
1946
Hermann Joseph Muller United States "for the discovery of the production of mutations by means of X-ray irradiation"[45]
1947 Carl Ferdinand Cori.jpg Carl Ferdinand Cori United States "for their discovery of the course of the catalytic conversion of glycogen"[46]
Gerty Theresa Cori.jpg Gerty Theresa Cori, née Radnitz United States
Bernado Houssay.JPG Bernardo Alberto Houssay Argentina "for his discovery of the part played by the hormone of the anterior pituitary lobe in the metabolism of sugar"[46]
1948
Paul Hermann Müller Switzerland "for his discovery of the high efficiency of DDT as a contact poison against several arthropods"[47]
1949
Walter Rudolf Hess Switzerland "for his discovery of the functional organization of the interbrain as a coordinator of the activities of the internal organs"[48]
Moniz.jpg Antonio Caetano De Abreu Freire Egas Moniz Portugal "for his discovery of the therapeutic value of lobotomy in certain psychoses"[48]
1950
Philip Showalter Hench United States "for their discoveries relating to the hormones of the adrenal cortex, their structure and biological effects"[49]

Edward Calvin Kendall United States

Tadeusz Reichstein Switzerland
1951
Max Theiler Union of South Africa "for his discoveries concerning yellow fever and how to combat it"[50]
1952 Selman Waksman NYWTS.jpg Selman Abraham Waksman United States "for his discovery of streptomycin, the first antibiotic effective against tuberculosis"[51]
1953
Hans Adolf Krebs United Kingdom "for his discovery of the citric acid cycle"[52]
Portrait of Fritz Albert Lipmann (1899-1986), Biochemist (2551001689).jpg Fritz Albert Lipmann United States "for his discovery of co-enzyme A and its importance for intermediary metabolism"[52]
1954
John Franklin Enders United States "for their discovery of the ability of poliomyelitis viruses to grow in cultures of various types of tissue"[53]
Frederick Chapman Robbins United States
Thomas Huckle Weller United States
1955
Axel Hugo Theodor Theorell Sweden "for his discoveries concerning the nature and mode of action of oxidation enzymes"[54]
1956
André Frédéric Cournand United States "for their discoveries concerning heart catheterization and pathological changes in the circulatory system"[55]

Werner Forssmann Federal Republic of Germany

Dickinson W. Richards United States
1957
Daniel Bovet Italy "for his discoveries relating to synthetic compounds that inhibit the action of certain body substances, and especially their action on the vascular system and the skeletal muscles"[56]
1958 George W. Beadle.jpg George Wells Beadle United States "for their discovery that genes act by regulating definite chemical events"[57]
Edward Lawrie Tatum.jpg Edward Lawrie Tatum United States

Joshua Lederberg United States "for his discoveries concerning genetic recombination and the organization of the genetic material of bacteria"[57]
1959 Arthur Kornberg.jpg Arthur Kornberg United States "for their discovery of the mechanisms in the biological synthesis of ribonucleic acid and deoxyribonucleic acid"[58]

Severo Ochoa United States
1960 Burnet 2jpg.jpg Sir Frank Macfarlane Burnet Australia "for discovery of acquired immunological tolerance"[59]

Peter Brian Medawar United Kingdom
1961
Georg von Békésy United States "for his discoveries of the physical mechanism of stimulation within the cochlea"[60]
1962 Francis Crick.png Francis Harry Compton Crick United Kingdom "for their discoveries concerning the molecular structure of nucleic acids and its significance for information transfer in living material"[61]
JamesDWatson.jpg James Dewey Watson United States

Maurice Hugh Frederick Wilkins New Zealand
United Kingdom
1963
Sir John Carew Eccles Australia "for their discoveries concerning the ionic mechanisms involved in excitation and inhibition in the peripheral and central portions of the nerve cell membrane"[62]
Alan L. Hodgkin.jpg Alan Lloyd Hodgkin United Kingdom
Andrew huxley trinity.png Andrew Fielding Huxley United Kingdom
1964
Konrad Bloch United States "for their discoveries concerning the mechanism and regulation of the cholesterol and fatty acid metabolism"[63]
Feodor Lynen Federal Republic of Germany
1965
François Jacob France "for their discoveries concerning genetic control of enzyme and virus synthesis"[64]
André Lwoff France
Jacques Monod France
1966
Peyton Rous United States "for his discovery of tumour-inducing viruses"[65]
Charles Brenton Huggins United States "for his discoveries concerning hormonal treatment of prostatic cancer"[65]
1967
Ragnar Granit Sweden "for their discoveries concerning the primary physiological and chemical visual processes in the eye"[66]
Haldan Keffer Hartline United States
George Wald United States
1968 Robert W. Holley..jpg Robert W. Holley United States "for their interpretation of the genetic code and its function in protein synthesis"[67]
Har Gobind Khorana.jpg Har Gobind Khorana India
MNirenberg.jpg Marshall W. Nirenberg United States
1969 Max Delbruck.jpg Max Delbrück United States "for their discoveries concerning the replication mechanism and the genetic structure of viruses"[68]
Alfred D. Hershey 1969.jpg Alfred D. Hershey United States

Salvador E. Luria United States
1970 Axelrod01.jpg Julius Axelrod United States "for their discoveries concerning the humoral transmittors in the nerve terminals and the mechanism for their storage, release and inactivation"[69]

Ulf von Euler Sweden

Sir Bernard Katz United Kingdom
1971
Earl W. Sutherland, Jr. United States "for his discoveries concerning the mechanisms of the action of hormones"[70]
1972
Gerald M. Edelman United States "for their discoveries concerning the chemical structure of antibodies"[71]
Rodney R. Porter United Kingdom
1973
Karl von Frisch Federal Republic of Germany "for their discoveries concerning organization and elicitation of individual and social behaviour patterns"[72]
Nikolaas Tinbergen (left), Konrad Lorenz (right) Konrad Lorenz Austria
Nikolaas Tinbergen United Kingdom
1974
Albert Claude Belgium "for their discoveries concerning the structural and functional organization of the cell"[73]
Christian de Duve Belgium
George E. Palade United States
1975 DavidBaltimore2008.JPG David Baltimore United States "for their discoveries concerning the interaction between tumour viruses and the genetic material of the cell"[74]
Renato Dulbecco in 1966.jpg Renato Dulbecco United States
Howard M. Temin.jpg Howard Martin Temin United States
1976
Baruch S. Blumberg United States "for their discoveries concerning new mechanisms for the origin and dissemination of infectious diseases"[75]

D. Carleton Gajdusek United States
1977
Roger Guillemin United States "for their discoveries concerning the peptide hormone production of the brain"[76]
Schally portrait.jpg Andrew V. Schally United States

Rosalyn Yalow United States "for the development of radioimmunoassays of peptide hormones"[76]
1978 Werner Arber 2008.jpg Werner Arber Switzerland "for the discovery of restriction enzymes and their application to problems of molecular genetics"[77]

Daniel Nathans United States
Hamilton Smith.jpg Hamilton O. Smith United States
1979
Allan M. Cormack United States "for the development of computer assisted tomography"[78]

Godfrey N. Hounsfield United Kingdom
1980 Barujbenacerraf.gif Baruj Benacerraf United States "for their discoveries concerning genetically determined structures on the cell surface that regulate immunological reactions"[79]

Jean Dausset France

George D. Snell United States
1981
Roger W. Sperry United States "for his discoveries concerning the functional specialization of the cerebral hemispheres"[80]

David H. Hubel United States "for their discoveries concerning information processing in the visual system"[80]

Torsten N. Wiesel Sweden
1982
Sune K. Bergström Sweden "for their discoveries concerning prostaglandins and related biologically active substances"[81]

Bengt I. Samuelsson Sweden

John R. Vane United Kingdom
1983
Barbara McClintock United States "for her discovery of mobile genetic elements"[82]
1984
Niels K. Jerne Denmark "for theories concerning the specificity in development and control of the immune system and the discovery of the principle for production of monoclonal antibodies"[83]

Georges J.F. Köhler Federal Republic of Germany

César Milstein Argentina
United Kingdom
1985 Mike Brown 2003.jpg Michael S. Brown United States "for their discoveries concerning the regulation of cholesterol metabolism"[84]
Joe Goldstein.JPG Joseph L. Goldstein United States
1986 Stanley Cohen-Biochemist.jpg Stanley Cohen United States "for their discoveries of growth factors"[85]
Rita Levi-Montalcini in 1965.jpg Rita Levi-Montalcini Italy
United States
1987
Susumu Tonegawa Japan "for his discovery of the genetic principle for generation of antibody diversity"[86]
1988
Sir James W. Black United Kingdom "for their discoveries of important principles for drug treatment"[87]
Gertrude B. Elion United States
George H. Hitchings United States
1989
J. Michael Bishop United States "for their discovery of the cellular origin of retroviral oncogenes"[88]
Harold E. Varmus United States
1990
Joseph E. Murray United States "for their discoveries concerning organ and cell transplantation in the treatment of human disease"[89]
E. Donnall Thomas United States
1991 Erwin neher 2007 lindau.jpg Erwin Neher Federal Republic of Germany "for their discoveries concerning the function of single ion channels in cells"[90]

Bert Sakmann Federal Republic of Germany
1992
Edmond H. Fischer Switzerland
United States
"for their discoveries concerning reversible protein phosphorylation as a biological regulatory mechanism"[91]
Edwin G. Krebs United States
1993
Richard J. Roberts United Kingdom "for their discoveries of split genes"[92]
Phillip A. Sharp United States
1994
Alfred G. Gilman United States "for their discovery of G-proteins and the role of these proteins in signal transduction in cells"[93]
Martin Rodbell United States
1995
Edward B. Lewis United States "for their discoveries concerning the genetic control of early embryonic development"[94]
Christiane Nüsslein-Volhard mg 4383.jpg Christiane Nüsslein-Volhard Federal Republic of Germany
Eric F. Wieschaus.jpg Eric F. Wieschaus United States
1996
Peter C. Doherty Australia "for their discoveries concerning the specificity of the cell mediated immune defence"[95]
Rolf M. Zinkernagel Switzerland
1997
Stanley B. Prusiner United States "for his discovery of Prions - a new biological principle of infection"[96]
1998
Robert F. Furchgott United States "for their discoveries concerning nitric oxide as a signalling molecule in the cardiovascular system"[97]

Louis J. Ignarro United States
Ferid Murad.jpg Ferid Murad United States
1999 Gunter Blobel 2008 1.JPG Günter Blobel United States "for the discovery that proteins have intrinsic signals that govern their transport and localization in the cell"[98]
2000
Arvid Carlsson Sweden "for their discoveries concerning signal transduction in the nervous system"[99]
Paul Greengard United States
Eric Richard Kandel.jpg Eric R. Kandel United States
2001
Leland H. Hartwell United States "for their discoveries of key regulators of the cell cycle"[100]
Tim hunt.jpg Tim Hunt United Kingdom
Plos nurse.jpg Sir Paul M. Nurse United Kingdom
2002
Sydney Brenner United Kingdom "for their discoveries concerning 'genetic regulation of organ development and programmed cell death'"[101]

H. Robert Horvitz United States
Plos sulston.jpg John E. Sulston United Kingdom
2003
Paul Lauterbur United States "for their discoveries concerning magnetic resonance imaging"[102]
Peter Mansfield Leipzig.jpg Sir Peter Mansfield United Kingdom
2004
Richard Axel United States "for their discoveries of odorant receptors and the organization of the olfactory system"[103]
LindaBuck cropped 1.jpg Linda B. Buck United States
2005
Barry J. Marshall Australia "for their discovery of the bacterium Helicobacter pylori and its role in gastritis and peptic ulcer disease"[104]
J. Robin Warren Australia
2006 Andrew Fire, Stanford University.jpg Andrew Z. Fire United States "for their discovery of RNA interference - gene silencing by double-stranded RNA"[105]

Craig C. Mello United States
2007 Mario Capecchi UTHSCSA.JPG Mario R. Capecchi United States "for their discoveries of principles for introducing specific gene modifications in mice by the use of embryonic stem cells."[106]
Martin Evans Nobel Prize.jpg Sir Martin J. Evans United Kingdom

Oliver Smithies United States
2008 Harald zur Hausen-press conference Dec 06th, 2008-6.jpg Harald zur Hausen Germany "for his discovery of human papilloma viruses causing cervical cancer"[107]
Françoise Barré-Sinoussi-press conference Dec 06th, 2008-1.jpg Françoise Barré-Sinoussi France "for their discovery of human immunodeficiency virus"[107]
LucMontagnier1995 065.jpg Luc Montagnier France
2009 Elizabeth Blackburn 2009-01.JPG Elizabeth H. Blackburn United States
Australia
"for the discovery of how chromosomes are protected by telomeres and the enzyme telomerase"[108]
Carol Greider 2009-01.JPG Carol W. Greider United States
JSzostak.jpg Jack W. Szostak United States
United Kingdom