PubMed Health⌕ Search

Biomedical subjects

Jutta Gampe

Publications and source records attributed to Jutta Gampe.

5 recordsLinked to original sources

Symmetrically dividing cells of the fission yeast schizosaccharomyces pombe do age.

Theories of the evolution of senescence state that symmetrically dividing organisms do not senesce. However, this view is challenged by experimental evidence. We measured by immunofluorescence the occurrence and intensity of protein carbonylation in single and symmetrically dividing cells of Schizosaccharomyces pombe. Cells of S. pombe show different levels of carbonylated proteins. Most cells have little damage, a few show a lot, an observation consistent with the gradual accumulation of carbonylation over time. At reproduction, oxidized proteins are shared between the two resulting cells. These results indicate that S. pombe does age, but does so in a different way from other studied species. Damaged cells give rise to damaged cells. The fact that cells with no or few carbonylated proteins constitute the main part of the population can explain why, although age is not reset to zero in one of the cells during division, the pool of young cells remains large enough to prevent the rapid extinction of the population.

Cell Division↗

Handgrip strength among nonagenarians and centenarians in three European regions.

BACKGROUND: Handgrip strength is an important predictor of disability and mortality among old people. The aim was to compare the grip strength among very old people in three regions of Europe. METHODS: In this substudy of the European Challenge for Healthy Aging project, only the long-lived probands were included. The maximum value of three measurements of handgrip strength was selected for the analysis. Adjustment for factors known to be correlated with grip strength was made by linear regression. RESULTS: Among 598 very old people (median age = 98 years) a clear North-South gradient was observed: For men, handgrip strength dropped from 24.2 kg in Southern Denmark to 20.8 kg in Languedoc-Roussillon, France and 14.2 kg in Calabria, Italy (p < .0001), whereas for women the drop was smaller (from 12.2 to 9.2 kg; p = .0021). The difference remains significant after adjustment for age, gender, housing, knee height, Activities of Daily Living (ADL) scale score, score on the Six-Item Mini-Mental State Examination, chair stand, and number of age-related diseases, although these factors explain two thirds of the variation in handgrip strength. CONCLUSIONS: Among nonagenarians and centenarians in three different European regions, we found a significant North-South gradient in handgrip strength with substantially lower values in Calabria. This finding may be due both to population background differences (e.g., genetic variations, birth weight, childhood growth) and to sociocultural differences (e.g., lifestyle, health care).

Aged↗

Age-specific demography in Plantago: uncovering age-dependent mortality in a natural population.

Accurate measures of age-dependent mortality are critical to life-history analysis and measures of fitness, yet these measures are difficult to obtain in natural populations. Age-dependent mortality patterns can be obscured not only by seasonal variation in environmental conditions and reproduction but also by changes in the heterogeneity among individuals in the population over time due to selection. This study of Plantago lanceolata uses longitudinal data from a field study with a large number of individuals to develop a model to estimate the shape of the baseline hazard function that represents the age-dependent risk of mortality. The model developed here uses both constant (genetics, spatial location) and time-varying (temperature, rainfall, reproduction, size) covariates not only to estimate the underlying mortality pattern but also to demonstrate that the risk of mortality associated with fitness components can change with time/age. Moreover, this analysis suggests that increasing size after reproductive maturity may allow this plant species to escape from demographic senescence.

Demography↗

Tooth cementum annulation for age estimation: results from a large known-age validation study.

Recent research indicates that tooth-cementum annulations (TCA) may be used more reliably than other morphological or histological traits of the adult skeleton to estimate age. Until now, however, confidence intervals for age estimated by this method have not been available for paleodemographic and forensic applications. The present study addresses this problem. Based on a large known-age sample, age estimates by TCA were conducted in a blind study involving 363 teeth. Tooth-root cross sections were made using a refined preparation technique. Improved digital graphic procedures and enhancement strategies were used to produce digital images with a specially adapted software package. This resulted in high concordance between the TCA age estimates and chronological age. Assessment of the method's accuracy, as expressed by 95% confidence intervals, showed that error bounds for age estimates do not exceed 2.5 years. Sex differences, intraindividual correlations, and the effects of periodontal disease were studied. None of these indicators had a quantitative effect on the number of TCA bands when the proposed methodological standard was followed. We conclude that the TCA technique is a reliable method for estimating a subject's age from cementum annulations.

Adult↗

The case for negative senescence.

Negative senescence is characterized by a decline in mortality with age after reproductive maturity, generally accompanied by an increase in fecundity. Hamilton (1966) ruled out negative senescence: we adumbrate the deficiencies of his model. We review empirical studies of various plants and some kinds of animals that may experience negative senescence and conclude that negative senescence may be widespread, especially in indeterminate-growth species for which size and fertility increase with age. We develop optimization models of life-history strategies that demonstrate that negative senescence is theoretically possible. More generally, our models contribute to understanding of the evolutionary and demographic forces that mold the age-trajectories of mortality, fertility and growth.

Aging↗