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靶向细胞衰老中的代谢,干预的作用。

Targeting metabolism in cellular senescence, a role for intervention.

机构信息

Drexel University College of Medicine, 245 North 15th Street, Philadelphia, PA 19102, USA.

Drexel University College of Medicine, 245 North 15th Street, Philadelphia, PA 19102, USA.

出版信息

Mol Cell Endocrinol. 2017 Nov 5;455:83-92. doi: 10.1016/j.mce.2016.08.049. Epub 2016 Aug 31.

Abstract

Cellular senescence has gained much attention as a contributor to aging and susceptibility to disease. Senescent cells undergo a stable cell cycle arrest and produce pro-inflammatory cytokines. However, an additional feature of the senescence phenotype is an altered metabolic state. Despite maintaining a non-dividing state, senescent cells display a high metabolic rate. Metabolic changes characteristic of replicative senescence include altered mitochondrial function and perturbations in growth signaling pathways, such as the mTORC1-signaling pathway. Recent evidence has raised the possibility that these metabolic changes may be essential for the induction and maintenance of the senescent state. Interventions such as rapamycin treatment and methionine restriction impact key aspects of metabolism and delay cellular senescence to extend cellular lifespan. Here, we review the metabolic changes and potential metabolic regulators of the senescence program. In addition, we will discuss how lifespan-extending regimens prevent metabolic stress that accompanies and potentially regulates the senescence program.

摘要

细胞衰老作为衰老和易患病的一个因素引起了广泛关注。衰老细胞经历稳定的细胞周期停滞并产生促炎细胞因子。然而,衰老表型的另一个特征是改变的代谢状态。尽管保持非分裂状态,衰老细胞仍显示出高代谢率。复制性衰老的代谢变化包括改变的线粒体功能和生长信号通路的扰动,例如 mTORC1 信号通路。最近的证据提出了这样一种可能性,即这些代谢变化可能对诱导和维持衰老状态至关重要。雷帕霉素治疗和蛋氨酸限制等干预措施影响代谢的关键方面,并延迟细胞衰老以延长细胞寿命。在这里,我们综述了衰老程序的代谢变化和潜在的代谢调节剂。此外,我们将讨论延长寿命的方案如何预防伴随并可能调节衰老程序的代谢应激。

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