Hans Spemann
From Wikipedia, the free encyclopedia
Hans Spemann | |
Hans Spemann
|
|
Born | June 27, 1869 Stuttgart |
---|---|
Died | September 9, 1941 death_place = Freiburg |
Nationality | German |
Fields | embryologist |
Known for | Embryonic induction and the Organiser |
Notable awards | Nobel Prize in Physiology or Medicine in 1935 |
Hans Spemann (June 27, 1869 – September 9, 1941) was a German embryologist who was awarded the Nobel Prize in Physiology or Medicine in 1935 for his discovery of the effect now known as embryonic induction, an influence, exercised by various parts of the embryo, that directs the development of groups of cells into particular tissues and organs.
Contents |
[edit] Biography
Hans Spemann was born in Stuttgart on June 27, 1869, the eldest son of publisher Wilhelm Spemann and his wife Lisinka, nee Hoffman. After he left school in 1888 he spent a year in his father's business, then, in 1889-1890, he did military service in the Kassel Hussars followed by a short time as a bookseller in Hamburg. In 1891 he entered the University of Heidelberg where he studied medicine, taking his preliminary examination in 1893. There he met the biologist and psychologist Gustav Wolff who had begun experiments on the embryological developments of newts and shown that, if the lens of an developing newt's eye is removed, it regenerates.
In 1892 Spemann married Klara Binder: the couple were to have two sons. In 1893-1894 he moved to the University of Munich for clinical training but decided, rather than becoming a clinician, to move to the Zoological Institute at the University of Würzburg, where he remained as a lecturer until 1908. His degree in zoology, botany, and physics, awarded in 1895, followed study under Theodor Boveri, Julius Sachs and Wilhelm Röntgen.[1]
For his Ph.D. thesis under Boveri, Spemann studied cell lineage in the parasitic worm Strongylus paradoxus, for his teaching diploma, the development of the middle ear in the frog.[2]
[edit] Experiments in Ontogeny
During the winter of 1896, while quarantined in a sanitarium recovering from tuberculosis, Spemann read August Weismann's book The Germ Plasm: A Theory of Heredity.[3] He wrote in his autobiography: "I found here a theory of heredity and development elaborated with uncommon perspicacity to its ultimate consequences.....This stimulated experimental work of my own"[4]
Results in embryology had been contradictory: in 1888 Wilhelm Roux, who had introduced the experimental manipulation of the embryo to discover the rules of development, had reported that a cell divided from a two-cell-stage embryo gave rise to half an embryo. In 1892 Hans Driesch, performing similar experiments on sea urchin embryos, had reported that, on the contrary, he had ended up with a completely-formed but smaller embryo. The reasons for the discrepancy were unclear. Others, including Thomas Hunt Morgan and Oscar Hertwig, attempted to separate the two cells, for the matter was of great importance, particularly to the arguments between proponents of epigenesis and preformation, but satisfactory results could not be achieved.[5]
As a master of micro-surgical technique, beginning with his continuing work on the amphibian eye, Spemann's papers in the early years of the 20th century on this vexed question were to be a great contribution to the development of experimental morphogenesis, causing him to be hailed in some quarters as the true founder of micro-surgery. He succeeded in dividing the cells with a noose of baby hair. Spemann found that one half could indeed form a whole embryo, but observed that the plane of division was crucial.[6] This dispatched the theory of preformation and gave some support to the concept of a morphogenetic field, a concept of which Spemann learned from Paul Alfred Weiss.
[edit] Induction and Organisers
Spemann was appointed Professor of Zoology and Comparative Anatomy at Rostock in 1908 and, in 1914, Associate Director of the Kaiser Wilhelm Institute of Biology at Dahlem, Berlin. Here he undertook the experiments that would make him famous. Drawing upon the recent work of Warren H. Lewis[7] and Ethel Browne Harvey,[8] he turned his skills to the gastrula, grafting a "field" of cells (the Primitive knot) from one embryo onto another.
The experiments, aided by Hilde Proescholdt (later Mangold), a Ph.D candidate in Spemann's laboratory in Freiburg, took place over several years and were published in full only in 1924. They described an area in the embryo, the portions of which, upon transplantation into a second embryo, organized or "induced" secondary embryonic primordia regardless of location. Spemann called these areas "organiser centres" or "organisers". Later he showed that different parts of the organiser centre produce different parts of the embryo.
Despite his modern reputation, Spemann continued to entertain neo-vitalist "field" analyses similar to those of Driesch, Gurwitsch and Harold Saxton Burr. However, the follow-up work of Johannes Holtfreter, Dorothy M. Needham and Joseph Needham, Conrad Waddington and others showed that organizers killed by boiling, fixing or freezing were also capable of causing induction. The conclusion was that the actual controllers were inert molecules, though little headway was made until the end of the 20th century in discovering how signalling took place.
From 1919 Spemann was Professor of Zoology at the University of Freiburg-im-Breisgau, where he continued his line of enquiry until in 1937 he was relieved of his post to be replaced by one of his first students, Otto Mangold. In 1928 he was the first to perform somatic cell nuclear transfer using amphibian embryos - one of the first moves towards cloning.[9] He was awarded the Nobel Prize in 1935. His theory of embryonic induction by organisers is described in his book Embryonic Development and Induction (1938). He died of heart failure on 12 September 1941. He never lost his love of classical literature and, throughout his life, organized evening gatherings of friends to discuss art, literature, and philosophy.
[edit] See Also
[edit] References
- ^ Nobel Lectures, Physiology or Medicine 1922-1941, Elsevier Publishing Company, Amsterdam, 1965
- ^ Monograph by Claudio Stern, J. Z. Young Professor and Head of the Department of Anatomy and Developmental Biology at University College London, based on Spemann, 1943; Mangold, 1953; Hamburger, 1988. See: http://www.bioinfo.org.cn/book/Great%20Experments/great30.htm (retrieved May 2008).
- ^ http://library.thinkquest.org/24355/data/details/profiles/spemann.html
- ^ Spemann's autobiography, quoted in V. Hamburger, The Heritage of Experimental Embryology: Hans Spemann and the Organizer, 1988, Oxford University Press, Oxford, page 9.
- ^ Stern, op. cit.
- ^ ibid.
- ^ ibid.
- ^ Ethel Browne Harvey
- ^ Nobel Lectures, Physiology or Medicine 1922-1941, Elsevier Publishing Company, Amsterdam, 1965
[edit] Reading List
- Allen, G E (1993), “Inducers and 'organizers': Hans Spemann and experimental embryology.”, History and philosophy of the life sciences 15 (2): 229-36, 1993, PMID:8153264, <http://www.ncbi.nlm.nih.gov/pubmed/8153264>
- Asashima, M & Okada, T S (2001), “Spemann's influence on Japanese developmental biology.”, Int. J. Dev. Biol. 45 (1): 57-65, 2001, PMID:11291871, <http://www.ncbi.nlm.nih.gov/pubmed/11291871>
- Fankhauser, G, “Memories of great embryologists. Reminiscences of F. Baltzer, H. Spemann, F. R. Lillie, R. G. Harrison, and E. G. Conklin.”, Am. Sci. 60 (1): 46-55, PMID:4550376, <http://www.ncbi.nlm.nih.gov/pubmed/4550376>
- Fässler, P E (1996), “Hans Spemann (1869-1941) and the Freiburg School of Embryology.”, Int. J. Dev. Biol. 40 (1): 49-57, 1996 Feb, PMID:8735910, <http://www.ncbi.nlm.nih.gov/pubmed/8735910>
- Grunz, H (2001), “Developmental biology of amphibians after Hans Spemann in Germany.”, Int. J. Dev. Biol. 45 (1): 39-50, 2001, PMID:11291869, <http://www.ncbi.nlm.nih.gov/pubmed/11291869>
- Hamburger, V (1969), “Hans Spemann and the organizer concept.”, Experientia 25 (11): 1121-5, 1969 Nov 15, PMID:4902878, <http://www.ncbi.nlm.nih.gov/pubmed/4902878>
- Hamburger, V (1996), “Memories of Professor Hans Spemann's Department of Zoology at the University of Freiburg, 1920-1932.”, Int. J. Dev. Biol. 40 (1): 59-62, 1996 Feb, PMID:8735911, <http://www.ncbi.nlm.nih.gov/pubmed/8735911>
- Hamburger, V (1999), “Hans Spemann on vitalism in biology: translation of a portion of Spemann's autobiography.”, Journal of the history of biology 32 (2): 231-43, 1999, PMID:11624206, <http://www.ncbi.nlm.nih.gov/pubmed/11624206>
- Holtfreter, J F (1988), “A new look at Spemann's organizer.”, Dev. Biol. (NY) 5: 127-50, 1988, PMID:3077973, <http://www.ncbi.nlm.nih.gov/pubmed/3077973>
- Kenéz, J (1966), “[The work of Hans Spemann and progressive biology]”, Orvosi hetilap 107 (47): 2243-6, 1966 Nov 20, PMID:5342120, <http://www.ncbi.nlm.nih.gov/pubmed/5342120>
- Lagercrantz, Hugo (2006), “Hans Spemann (1869-1941): discoverer of the neuronal organizer.”, Acta Paediatr. 95 (4): 386-7, 2006 Apr, PMID:16720481, doi:10.1080/08035250600658085, <http://www.ncbi.nlm.nih.gov/pubmed/16720481>
- Oppenheimer, J M (1982), “Ernst Heinrich Haeckel as an intermediary in the transmutation of an idea.”, Proceedings of the American Philosophical Society 126 (5): 347-55, 1982, PMID:11615978, <http://www.ncbi.nlm.nih.gov/pubmed/11615978>
- Raju, T N (1999), “The Nobel chronicles. 1935: Hans Spemann (1869-1941).”, Lancet 353 (9149): 332, 1999 Jan 23, PMID:9929065, <http://www.ncbi.nlm.nih.gov/pubmed/9929065>
- Rinard, R G (1988), “Neo-Lamarckism and technique: Hans Spemann and the development of experimental embryology.”, Journal of the history of biology 21 (1): 95-118, 1988, PMID:11621431, <http://www.ncbi.nlm.nih.gov/pubmed/11621431>
- Saha, M (1991), “Spemann seen through a lens.”, Dev. Biol. (NY) 7: 91-108, 1991, PMID:1804219, <http://www.ncbi.nlm.nih.gov/pubmed/1804219>
- Sander, K & Fässler, P E (2001), “Introducing the Spemann-Mangold organizer: experiments and insights that generated a key concept in developmental biology.”, Int. J. Dev. Biol. 45 (1): 1-11, 2001, PMID:11291840, <http://www.ncbi.nlm.nih.gov/pubmed/11291840>
- Saxén, L (1994), “[Hans Spemann, the founder of modern developmental biology]”, Hippokrates (Helsinki, Finland) 11: 23-33, 1994, PMID:11640319, <http://www.ncbi.nlm.nih.gov/pubmed/11640319>
- Saxén, L (2001), “Spemann's heritage in Finnish developmental biology.”, Int. J. Dev. Biol. 45 (1): 51-5, 2001, PMID:11291870, <http://www.ncbi.nlm.nih.gov/pubmed/11291870>
- Shampo, M A & Kyle, R A (1999), “Hans Spemann--contributions to embryology.”, Mayo Clin. Proc. 74 (5): 474, 1999 May, PMID:10319077, <http://www.ncbi.nlm.nih.gov/pubmed/10319077>
- Spemann, H & Mangold, H (2001), “Induction of embryonic primordia by implantation of organizers from a different species. 1923.”, Int. J. Dev. Biol. 45 (1): 13-38, 2001, PMID:11291841, <http://www.ncbi.nlm.nih.gov/pubmed/11291841>
- Steinbeisser, H (1996), “The impact of Spemann's concepts on molecular embryology.”, Int. J. Dev. Biol. 40 (1): 63-8, 1996 Feb, PMID:8735912, <http://www.ncbi.nlm.nih.gov/pubmed/8735912>
- Sulek, K (1968), “[Nobel prize in 1935 for the discovery of the role of the organizers in the development of the organism]”, Wiad. Lek. 21 (8): 708, 1968 Apr 15, PMID:4877156, <http://www.ncbi.nlm.nih.gov/pubmed/4877156>
- Tagarelli, A; Piro, A; Lagonia, P & Tagarelli, G (2004), “Hans Spemann. One hundred years before the birth of experimental embryology.”, Anatomia, histologia, embryologia 33 (1): 28-32, 2004 Feb, PMID:15027959, doi:10.1111/j.1439-0264.2004.00505.x, <http://www.ncbi.nlm.nih.gov/pubmed/15027959>
[edit] External links
- Explanation of the Spemann-Mangold experiment from a Nature Reviews article
|