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An essential role for senescent cells in optimal wound healing through secretion of PDGF-AA.衰老细胞通过分泌血小板衍生生长因子-AA(PDGF-AA)在最佳伤口愈合中发挥重要作用。
Dev Cell. 2014 Dec 22;31(6):722-33. doi: 10.1016/j.devcel.2014.11.012. Epub 2014 Dec 11.
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Inflammation-induced DNA damage and damage-induced inflammation: a vicious cycle.炎症诱导的DNA损伤与损伤诱导的炎症:恶性循环。
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Myc and Ras oncogenes engage different energy metabolism programs and evoke distinct patterns of oxidative and DNA replication stress.Myc和Ras癌基因参与不同的能量代谢程序,并引发不同模式的氧化应激和DNA复制应激。
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Cellular senescence occurred widespread to multiple selective sites in the fetal tissues and organs of mice.细胞衰老广泛发生于小鼠胎儿组织和器官的多个选择位点。
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Stable cellular senescence is associated with persistent DDR activation.稳定的细胞衰老与持续的DNA损伤反应激活相关。
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Enhancing chemotherapy efficacy in Pten-deficient prostate tumors by activating the senescence-associated antitumor immunity.通过激活衰老相关抗肿瘤免疫增强Pten缺陷型前列腺肿瘤的化疗疗效。
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Aging: not all DNA damage is equal.衰老:并非所有DNA损伤都是相同的。
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Senescent cells: SASPected drivers of age-related pathologies.衰老细胞:与年龄相关疾病的可疑驱动因素。
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The kinase p38 activated by the metabolic regulator AMPK and scaffold TAB1 drives the senescence of human T cells.由代谢调节因子AMPK和支架蛋白TAB1激活的激酶p38驱动人类T细胞衰老。
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细胞衰老:从生长停滞到免疫原性转变。

Cellular senescence: from growth arrest to immunogenic conversion.

作者信息

Burton D G A, Faragher R G A

机构信息

Department of Molecular Cell Biology, The Weizmann Institute of Science, 76100, Rehovot, Israel,

出版信息

Age (Dordr). 2015;37(2):27. doi: 10.1007/s11357-015-9764-2. Epub 2015 Mar 20.

DOI:10.1007/s11357-015-9764-2
PMID:25787341
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC4365077/
Abstract

Cellular senescence was first reported in human fibroblasts as a state of stable in vitro growth arrest following extended culture. Since that initial observation, a variety of other phenotypic characteristics have been shown to co-associate with irreversible cell cycle exit in senescent fibroblasts. These include (1) a pro-inflammatory secretory response, (2) the up-regulation of immune ligands, (3) altered responses to apoptotic stimuli and (4) promiscuous gene expression (stochastic activation of genes possibly as a result of chromatin remodeling). Many features associated with senescent fibroblasts appear to promote conversion to an immunogenic phenotype that facilitates self-elimination by the immune system. Pro-inflammatory cytokines can attract and activate immune cells, the presentation of membrane bound immune ligands allows for specific recognition and promiscuous gene expression may function to generate an array of tissue restricted proteins that could subsequently be processed into peptides for presentation via MHC molecules. However, the phenotypes of senescent cells from different tissues and species are often assumed to be broadly similar to those seen in senescent human fibroblasts, but the data show a more complex picture in which the growth arrest mechanism, tissue of origin and species can all radically modulate this basic pattern. Furthermore, well-established triggers of cell senescence are often associated with a DNA damage response (DDR), but this may not be a universal feature of senescent cells. As such, we discuss the role of DNA damage in regulating an immunogenic response in senescent cells, in addition to discussing less established "atypical" senescent states that may occur independent of DNA damage.

摘要

细胞衰老首次在人成纤维细胞中被报道,是指在长期培养后出现的一种稳定的体外生长停滞状态。自最初的观察以来,已显示多种其他表型特征与衰老成纤维细胞中不可逆的细胞周期退出共同相关。这些特征包括:(1)促炎分泌反应;(2)免疫配体的上调;(3)对凋亡刺激的反应改变;(4)杂乱的基因表达(可能由于染色质重塑导致基因的随机激活)。许多与衰老成纤维细胞相关的特征似乎促进了向免疫原性表型的转变,从而有利于免疫系统的自我清除。促炎细胞因子可吸引并激活免疫细胞,膜结合免疫配体的呈现允许特异性识别,而杂乱的基因表达可能起到产生一系列组织限制性蛋白质的作用,这些蛋白质随后可被加工成肽,通过主要组织相容性复合体(MHC)分子进行呈递。然而,不同组织和物种的衰老细胞表型通常被认为与衰老的人成纤维细胞中所见的表型大致相似,但数据显示了一个更为复杂的情况,即生长停滞机制、组织来源和物种都可以从根本上调节这种基本模式。此外,公认的细胞衰老触发因素通常与DNA损伤反应(DDR)相关,但这可能不是衰老细胞的普遍特征。因此,除了讨论可能独立于DNA损伤而发生的不太明确的“非典型”衰老状态外,我们还讨论了DNA损伤在调节衰老细胞免疫原性反应中的作用。