senescence (Also senescences) : Related Words Words similar in meaning to senescence

  • aging«
  • ageing«
  • agedness«
  • senescence«
  • catabiosis«
  • elderly«
  • aged«
  • senior«
  • longevity«
  • age«
  • seniority«
  • old«
  • -escence«
  • senescent cell«
  • senescent«
  • maturation«
  • tissue«
  • cellular senescence«
  • ripened«
  • ontogeny«
  • telomere«
  • older«
  • overage«
  • state«
  • lifespan«
  • ripe«
  • ripeness«
  • senility«
  • organism«
  • mature«
  • nonagenarian«
  • cell«
  • senesce«
  • sexagenarian«
  • senile«
  • replicative senescence«
  • maturate«
  • maturity«
  • get on«
  • octogenarian«
  • yeast«
  • growth«
  • rejuvenate«
  • sir2«
  • growing«
  • prosenescent«
  • dna damage«
  • emeritus«
  • process«
  • mouse«
  • centenarian«
  • presenescent«
  • deleterious mutation«
  • old age«
  • organ«
  • extrinsic mortality«
  • mitosis«
  • reliability theory«
  • ontogenesis«
  • macromolecule«
  • disease«
  • oldness«
  • humans«
  • mortality«
  • matureness«
  • gene«
  • geezerhood«
  • biological immortality«
  • specie«
  • ercs«
  • hoar«
  • antisenescence«
  • theory«
  • development«
  • mammal«
  • eld«
  • structural protein«
  • grey«
  • worm«
  • turn«
  • natural selection«
  • years«
  • epigenetic clock«
  • grizzly«
  • biological aging«
  • gray«
  • oxidative stress«
  • ancient«
  • free radical«
  • negligible senescence«
  • fly«
  • morphogenesis«
  • model organism«
  • neurogenesis«
  • drug«
  • dotage«
  • cell division«
  • intussusception«
  • gametogenesis«
  • calorie restriction«
  • psychosexual development«
  • rate«
  • masculinization«
  • gene expression«
  • blossoming«
  • damage«
  • angiogenesis«
  • dna«
  • adulthood«
  • biopolymers«
  • efflorescence«
  • human«
  • psychomotor development«
  • predation«
  • mellowness«
  • progeroid mouse«
  • apposition«
  • organismal senescence«
  • staleness«
  • jan van deursen«
  • flowering«
  • homeodynamic space«
  • virilization«
  • teething«
  • pbef«
  • sprouting«
  • organism ageing«
  • molecular heterogeneity«
  • germination«
  • immunogenic phenotype«
  • suppression«
  • immortal population«
  • fossilization«
  • epigenetic clock analysis«
  • antediluvian«
  • epigenetic aging«
  • inflorescence«
  • eccdna«
  • rooting«
  • metabolic rate«
  • proliferation«
  • living hypothesis«
  • anthesis«
  • initial flaw«
  • frostiness«
  • selection«
  • biological process«
  • oncogene«
  • survival pathway«
  • habit«
  • gompertz law«
  • geezer«
  • cellular mitosis«
  • grizzle«
  • mutation«
  • vivo evidence«
  • florescence«
  • darren baker«
  • foliation«
  • pathway«
  • life cycle«
  • calcium deposition«
  • recapitulation«
  • body size«
  • second childhood«
  • cohesion«
  • body«
  • cultivation«
  • disorder«
  • organic process«
  • mitotic«
  • dentition«
  • stochastic theory«
  • cumulative damage«
  • vegetation«
  • telomere length«
  • chemical damage«
  • produce«
  • mortality rate«
  • voting age«
  • hayflick limit«
  • dna damage theory«
  • drinking age«
  • real hazard«
  • dolly«
  • virilisation«
  • caloric restriction«
  • venerableness«
  • biogerontology«
  • venerability«
  • james kirkland«
  • teratogenesis«
  • rdna«
  • psychogenesis«
  • bat«
  • post-menopause«
  • reactive specie«
  • post-maturity«
  • evolutionary time«
  • palingenesis«
  • system«
  • odontiasis«
  • biological clock«
  • nonage«
  • ois«
  • myelinization«
  • telomerase«
  • myelinisation«
  • repair«
  • masculinisation«
  • maintenance«
  • kenogenesis«
  • caenorhabditis elegans«
  • kainogenesis«
  • activation«
  • juvenescence«
  • result«
  • infructescence«
  • accident«
  • hoariness«
  • minn.«
  • fructification«
  • dna repair«
  • fossilisation«
  • external pressure«
  • dotard«
  • drosophila melanogaster«
  • cytogeny«
  • death«
  • cytogenesis«
  • reactive oxygen specie«
  • cenogenesis«
  • oxygen«
  • cainogenesis«
  • bird«
  • caenogenesis«
  • life«
  • auxesis«
  • symptom«
  • ancientness«
  • amelogenesis«
  • mayo clinic«
  • biological system«
  • leafing«
  • postponement«
  • antiquity«
  • population«
  • apoptosis«
  • fruit fly«
  • culture«
  • lipid«
  • youth«
  • protein«
  • get«
  • environmental factor«
  • minority«
  • bernstein«
  • force«
  • majority«
  • young cohort«
  • yeast mating locus«
  • yeast lifespan«
  • wall stiffness«
  • usual wasting«
  • unnatural substituents«
  • ubiquitous chemical agent«
  • tamara tchkonia«
  • sugar damage«
  • sugar adduct«
  • successive shortening«
  • specific histone residue«
  • sir2 resveratrol«
  • sir2 homologues«
  • sir2 activity«
  • simple budding yeast saccharomyces«
  • similar biopolymers«
  • shorter intrinsic lifespan«
  • short maximum life span«
  • senescent toxin«
  • senescent effect«
  • senescent cell accumulation«
  • rna interference approach«
  • reliability structure«
  • reactive tissue formation«
  • ras2 overexpression«
  • ras1«
  • nicotinamidase pnc1«
  • negative atherosclerotic effect«
  • ned sharpless«
  • nathan lebrasseur«
  • nad+-dependent histone deacetylase«
  • mouse ’s tissue«
  • mouse elderly«
  • mortality convergence«
  • morbidity hypothesis«
  • mitochondrial free radical«
  • major testable prediction«
  • low extrinsic mortality«
  • lifespan relationship«
  • intrinsic age«
  • insulin/igf-1 pathway«
  • inducible suicide gene«
  • immortal planarian flatworm«
  • human sirt1 protein«
  • homeodynamics–systemic preservation«
  • half ageless«
  • gompertz–makeham«
  • glycoxidation«
  • function characteristic«
  • free radical capable«
  • finite health care resource«
  • fewest predator«
  • fewer individual alive«
  • fast basal metabolic rate«
  • failure law applicable«
  • failure law«
  • failure kinetics«
  • evolutionary theorist george williams«
  • essential nuclear factor«
  • effective health care goal«
  • earliest aging theory«
  • dna. glycation«
  • dna. certain metal ion«
  • dietary polyphenol antioxidant«
  • defective dna repair enzyme«
  • damaging structural protein«
  • controlled/optimum condition«
  • chronological decrease«
  • cell pristine«
  • bubr1 progeroid mouse«
  • body p16«
  • antagonistic plietropy theory«
  • akt-«
  • glucose«
  • cohort«
  • research«
  • effect«
  • negative effect«
  • weibull law«
  • transgenic progeroid mouse«
  • subsequent leveling«
  • stem cell exhaustion«
  • soil roundworm«
  • senescent cell burden«
  • senescence inducer«
  • selection shadow«
  • redundancy exhaustion«
  • promiscuous gene expression«
  • proliferative adult stem cell«
  • programmed theory«
  • pleiotropic gene«
  • organismal aging«
  • negative senescence«
  • mutation accumulation theory«
  • medical ethicist miguel faria«
  • mayo study«
  • inflammatory secretome«
  • immune ligand«
  • genetic disaster«
  • extrachromosomal circular dna«
  • external/environmental factor«
  • exhaustive proliferation«
  • epigenetic ageing«
  • embryonic/placental development«
  • ectopic oncogene expression«
  • current scientific speculation«
  • contagious lung disease«
  • cellular functionality«
  • cellular dna damage response pathway«
  • calorically«
  • biopolymer chain«
  • biological aging theory«
  • bioethicist ezekiel emanuel«
  • andre terzic«
  • metabolism«
  • visfatin«
  • vessel wall thickening«
  • usual burden«
  • telomere strand«
  • slower aging«
  • serum insulin level«
  • senolytic drug«
  • redundancy level«
  • progressive shrinkage«
  • progeroid«
  • prey mammal«
  • oxidant damage«
  • more individual«
  • irreplaceable element«
  • immortalised cell«
  • homeostatic capacity«
  • glucocorticoid secretion«
  • gene sir2«
  • genage database«
  • forkhead family«
  • experimental elimination«
  • disposable soma«
  • chromosomal telomere«
  • chromatin alteration«
  • cell cycle theory«
  • advanced adult«
  • acetylates«
  • telomere attrition«
  • replicative aging«
  • rdna repeat«
  • phenoptosis«
  • normal diploid cell«
  • molecular biomarker«
  • investing resource«
  • heterochromatin focus«
  • harmful allele«
  • genus hydra«
  • complex metazoan«
  • complex lifeforms«
  • chronological aging«
  • accumulation«
  • telomerase gene«
  • sahf«
  • ras2«
  • progerin«
  • life mortality plateau«
  • life mortality deceleration«
  • immortal specie«
  • geneticist j. b. s. haldane«
  • extrachromosomal rdna circle«
  • evolutionary theories«
  • dna damage response pathway«
  • dna damage due«
  • biological ageing«
  • defect«
  • survival response«
  • simple specie«
  • nicotinamidase«
  • homeostatic imbalance«
  • chemical attachment«
  • cellular ageing«
  • fisher«
  • senolytics«
  • senescence research«
  • sage ke«
  • plant senescence«
  • aged mouse«
  • pathological role«
  • intrinsic mechanism«
  • animal«
  • β-galactosidase activity«
  • tumour suppression«
  • superoxide ion«
  • molecular damage«
  • mitohormesis«
  • alternative rna splicing«
  • vascular reactivity«
  • nutrient sensing«
  • antagonistic pleiotropy«
  • difference«
  • premature senescence«
  • modern statistical method«
  • hutchinson–gilford progeria syndrome«
  • high position«
  • juvenile survival«
  • proteostasis«
  • lifetime reproductive success«
  • hormonal signaling«
  • gompertz–makeham law«
  • fewer predator«
  • investigator«
  • lifespan extension«
  • fat layer«
  • damaged protein«
  • constant failure rate«
  • free radical production«
  • exact etiology«
  • cloning experiment«
  • cellular aging«
  • reproduction«
  • fast metabolism«
  • presence«
  • miraculous feat«
  • max rubner«
  • biological kingdom«
  • probability«
  • typical circumstance«
  • specific damage«
  • ku70«
  • haptens«
  • syndrome x«
  • progressive failure«
  • causative role«
  • onset«
  • hypothesis«
  • initial difference«
  • hereditary defect«
  • critical limit«
  • role«
  • system responsible«
  • unintended outcome«
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