Skip to content
senescence
EntityQ2070979· pop 34· linked from 710 articles

senescence

Sign in to save

Also known as biological aging, biological ageing

Senescence () or biological aging is the gradual deterioration of functional characteristics in living organisms. Whole organism senescence involves an increase in death rates or a decrease in fecundity with increasing age, at least in the later part of an organism's life cycle. However, the effects of senescence can be delayed. The 1934 discovery that calorie restriction can extend lifespans by 50% in rats, the existence of species having negligible senescence, and the existence of potentially immortal organisms such as members of the genus Hydra have motivated research into delaying senescen

Wikidata facts

Show 2 more facts
Commons category
Senescence
ICPC 2 ID
P05
Sources (3)

via Wikidata · CC0

~21 min read

Article

23 sections
Contents
  • Definition and characteristics
  • Variation among species
  • Theories of aging
  • Evolutionary aging theories
  • Antagonistic pleiotropy
  • Cancer versus cellular senescence tradeoff theory of aging
  • Disposable soma
  • Programmed aging theories
  • Damage accumulation theories
  • The free radical theory of aging
  • Chemical damage
  • DNA damage
  • Mutation accumulation
  • Other damage
  • Stem cell theories of aging
  • Biomarkers of aging
  • Aging clocks
  • Genetic determinants of aging
  • Healthspans and aging in society
  • Interventions
  • See also
  • References
  • External links

Senescence () or biological aging is the gradual deterioration of functional characteristics in living organisms. Whole organism senescence involves an increase in death rates or a decrease in fecundity with increasing age, at least in the later part of an organism's life cycle. However, the effects of senescence can be delayed. The 1934 discovery that calorie restriction can extend lifespans by 50% in rats, the existence of species having negligible senescence, and the existence of potentially immortal organisms such as members of the genus Hydra have motivated research into delaying senescence and thus age-related diseases. Rare human mutations can cause accelerated aging diseases.

Environmental factors may affect aging – for example, overexposure to ultraviolet radiation accelerates skin aging. Different parts of the body may age at different rates and distinctly, including the brain, the cardiovascular system, and muscle. Similarly, functions may distinctly decline with aging, including movement control and memory. Two organisms of the same species can also age at different rates, making biological aging and chronological aging distinct concepts.

Gallery (8)

Connections

Categories