Cellular Senescence: A Translational Perspective
Клеточное старение: трансляционная перспектива
2017-04-11
SCID: 54.1/pd92ft6j
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Cellular senescenceChronic diseasesSenescence-associated secretory phenotypeSenescent cell anti-apoptotic pathwaysSenolytic agents
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Abstract (AI)
Cellular senescence entails essentially irreversible replicative arrest, apoptosis resistance, and frequently acquisition of a pro-inflammatory, tissue-destructive senescence-associated secretory phenotype (SASP). Senescent cells accumulate in various tissues with aging and at sites of pathogenesis in many chronic diseases and conditions. The SASP can contribute to senescence-related inflammation, metabolic dysregulation, stem cell dysfunction, aging phenotypes, chronic diseases, geriatric syndromes, and loss of resilience. Delaying senescent cell accumulation or reducing senescent cell burden is associated with delay, prevention, or alleviation of multiple senescence-associated conditions. We used a hypothesis-driven approach to discover pro-survival Senescent Cell Anti-apoptotic Pathways (SCAPs) and, based on these SCAPs, the first senolytic agents, drugs that cause senescent cells to become susceptible to their own pro-apoptotic microenvironment. Several senolytic agents, which appear to alleviate multiple senescence-related phenotypes in pre-clinical models, are beginning the process of being translated into clinical interventions that could be transformative.
Key Findings
1
Cellular senescence involves essentially irreversible replicative arrest, apoptosis resistance, and often a pro-inflammatory, tissue-destructive SASP.
2
Delaying senescent-cell accumulation or reducing senescent-cell burden is associated with delaying, preventing, or alleviating multiple senescence-associated conditions.
3
Hypothesis-driven identification of senescent-cell anti-apoptotic pathways enabled development of senolytic agents that selectively sensitize senescent cells to apoptosis; several show benefits in preclinical models and are entering clinical translation.
4
Senescent cells accumulate during aging and in pathological sites across numerous chronic diseases and conditions.
5
The SASP promotes inflammation, metabolic dysregulation, stem-cell dysfunction, aging phenotypes, chronic disease, geriatric syndromes, and reduced resilience.
Research Object
Senescent cells accumulating in tissues (cells with senescence-associated secretory phenotype, SASP)
Research Subject
the biological mechanisms, pathological effects, and therapeutic targeting of senescent cells, including SCAPs and senolytic agents
Publication Details
Publication Date
2017-04-11
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