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将胎盘哺乳动物的DNA损伤和衰老与妊娠期及寿命联系起来。

Linking DNA damage and senescence to gestation period and lifespan in placental mammals.

作者信息

Singh Vijay Pratap, Singh Pushpendra

机构信息

ICMR-National Institute of Research in Tribal Health, Jabalpur, Madhya Pradesh, India.

AcSIR Faculty of Medical Research, New Delhi, India.

出版信息

Front Cell Dev Biol. 2024 Sep 30;12:1480695. doi: 10.3389/fcell.2024.1480695. eCollection 2024.

Abstract

The mechanism that synchronizes the timing of parturition remains a mystery. Each mammalian species has a specific duration of gestation that is determined by integrated interactions among the mother, placenta, and fetus. Senescence is primarily driven by DNA damage and is one of the critical factors influencing both parturition and lifespan. In this study, we investigated senescence as a physiological process during pregnancy and observed a gradual physiological increase in senescence in the maternal decidua and placental cells with gestation. This increase in senescence was associated with a gradual physiological increase in DNA damage during gestation. An analysis of the AnAge dataset revealed a positive correlation between the gestation period and maximum lifespan across 740 mammalian species. This finding supports the hypothesis that the rates of DNA damage and senescence may impact both the gestation period and lifespan. We suggest that the relationship between gestation period and lifespan in mammals is mediated by species-specific rates of DNA damage and senescence, necessitating further explorations into their causal roles.

摘要

使分娩时间同步的机制仍是一个谜。每个哺乳动物物种都有特定的妊娠期时长,这是由母体、胎盘和胎儿之间的综合相互作用决定的。衰老主要由DNA损伤驱动,是影响分娩和寿命的关键因素之一。在本研究中,我们将衰老作为孕期的一个生理过程进行了调查,并观察到随着妊娠进展,母体蜕膜和胎盘细胞中的衰老在生理上逐渐增加。这种衰老的增加与妊娠期DNA损伤在生理上的逐渐增加相关。对AnAge数据集的分析揭示了740个哺乳动物物种的妊娠期与最大寿命之间存在正相关。这一发现支持了DNA损伤和衰老速率可能影响妊娠期和寿命的假说。我们认为,哺乳动物妊娠期与寿命之间的关系是由物种特异性的DNA损伤和衰老速率介导的,有必要对它们的因果作用进行进一步探索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3d53/11471632/c7ba32de8cc3/fcell-12-1480695-g001.jpg

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