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An Emergent Integrated Aging Process Conserved Across Primates

机译:紧急综合老化过程在灵长类动物中保存

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Aging is a complex process emerging from integrated physiological networks. Recent work using principal component analysis (PCA) of multisystem biomarkers proposed a novel fundamental physiological process, "integrated albunemia," which was consistent across human populations and more strongly associated with age and mortality risk than individual biomarkers. Here we tested for integrated albunemia and associations with age and mortality across six diverse nonhuman primate species and humans. PCA of 13 physiological biomarkers recovered in all species a primary axis of variation (PC1) resembling integrated albunemia, which increased with age in all but one species but was less predictive of mortality risk. Within species, PC1 scores were often reliably recovered with a minimal biomarker subset and usually stable between sexes. Even among species, correlations in PC1 structure were often strong, but the effect of phylogeny was inconclusive. Thus, integrated albunemia likely reflects an evolutionarily conserved process across primates and appears to be generally associated with aging but not necessarily with negative impacts on survival. Integrated albunemia is unlikely to be the only conserved emergent physiological process; our findings hence have implications both for the evolution of the aging process and of physiological networks more generally.
机译:老化是从综合生理网络中出现的复杂过程。多系统生物标志物使用主成分分析(PCA)的最新作品提出了一种新的基本生理过程,“综合Albunemia”,这是跨人类人群的一致,与年龄和死亡率风险更强烈地相关。在这里,我们测试了综合的Albunemia和患有六种不同的非人类灵长类动物和人类的年龄和死亡的协会。在所有物种中恢复的13个生理生物标志物的PCA是一种类似于综合Albunemia的主要变异轴(PC1),随着一种物种而含有的年龄,但对死亡率的预测性较低。在物种中,使用最小的生物标志物子集经常可靠地回收PC1分数,并且通常在性别之间稳定。即使在物种中,PC1结构中的相关性往往是强烈的,但系统发育的效果不确定。因此,集成的Albunemia可能反映了灵长类动物的进化过程,并且似乎通常与老化有关,但不一定对存活率产生负面影响。综合的Albunemia不太可能成为唯一保守的紧急生理过程;因此,我们的研究结果对老龄化过程和生理网络的演变更加致力于更普遍。

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