Cytogerontology since 1881: A reappraisal of August Weismann and a review of modern progress
- 1 June 1982
- journal article
- other
- Published by Springer Nature in Human Genetics
- Vol. 60 (2), 101-121
- https://doi.org/10.1007/bf00569695
Abstract
Summary Cytogerontology, the science of cellular ageing, originated in 1881 with the prediction by August Weismann that the somatic cells of higher animals have limited division potential. Weismann's prediction was derived by considering the role of natural selection in regulating the duration of an organism's life. For various reasons, Weismann's ideas on ageing fell into neglect following his death in 1914, and cytogerontology has only reappeared as a major research area following the demonstration by Hayflick and Moorhead in the early 1960s that diploid human fibroblasts are restricted to a finite number of divisions in vitro. In this review we give a detailed account of Weismann's theory, and we reveal that his ideas were both more extensive in their scope and more pertinent to current research than is generally recognised. We also appraise the progress which has been made over the past hundred years in investigating the causes of ageing, with particular emphasis being given to (i) the evolution of ageing, and (ii) ageing at the cellular level. We critically assess the current state of knowledge in these areas and recommend a series of points as primary targets for future research.Keywords
This publication has 94 references indexed in Scilit:
- Predictions of the somatic mutation and mortalization theories of cellular ageing are contrary to experimental observationsJournal of Theoretical Biology, 1981
- Aging in vitro and D-glucose uptake kinetics of diploid human fibroblastsJournal of Cellular Physiology, 1981
- Error propagation in intracellular information transferJournal of Theoretical Biology, 1980
- Teratomas and ChimerasScientific American, 1979
- A membrane hypothesis of agingJournal of Theoretical Biology, 1978
- On the etiology of agingJournal of Theoretical Biology, 1977
- Commitment to senescence: A model for the finite and infinite growth of diploid and transformed human fibroblasts in cultureJournal of Theoretical Biology, 1975
- WERNER'S SYNDROMEThe Lancet, 1970
- The moulding of senescence by natural selectionJournal of Theoretical Biology, 1966
- Aging: A Theory Based on Free Radical and Radiation ChemistryJournal of Gerontology, 1956