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从单细胞转录组大型图谱推断免疫细胞身份随年龄的丧失。

Loss of immune cell identity with age inferred from large atlases of single cell transcriptomes.

作者信息

Connolly Erin, Pan Tony, Aluru Maneesha, Chockalingam Sriram, Dhere Vishal, Gibson Greg

机构信息

Center for Integrative Genomics, and School of Biological Sciences, Georgia Institute of Technology, Atlanta, Georgia, USA.

Institute for Data Science and Engineering, Georgia Institute of Technology, Atlanta, Georgia, USA.

出版信息

Aging Cell. 2024 Dec;23(12):e14306. doi: 10.1111/acel.14306. Epub 2024 Aug 14.

Abstract

By analyzing two large atlases of almost 4 million cells, we show that immune-senescence involves a gradual loss of cellular identity, reflecting increased cellular heterogeneity, for effector, and cytotoxic immune cells. The effects are largely similar in both males and females and were robustly reproduced in two atlases, one assembled from 35 diverse studies including 678 adults, the other the OneK1K study of 982 adults. Since the mean transcriptional differences among cell-types remain constant across age deciles, there is little evidence for the alternative mechanism of convergence of cell-type identity. Key pathways promoting activation and stemness are down-regulated in aged T cells, while CD8 TEM and CD4 CTLs exhibited elevated inflammatory, and cytotoxicity in older individuals. Elevated inflammatory signaling pathways, such as MAPK and TNF-alpha signaling via NF-kB, also occur across all aged immune cells, particularly amongst effector immune cells. This finding of lost transcriptional identity with age carries several implications, spanning from a fundamental biological understanding of aging mechanisms to clinical perspectives on the efficacy of immunomodulation in elderly people.

摘要

通过分析两个包含近400万个细胞的大型图谱,我们发现免疫衰老涉及细胞身份的逐渐丧失,这反映出效应性和细胞毒性免疫细胞的细胞异质性增加。这种效应在男性和女性中大致相似,并且在两个图谱中得到了有力验证,一个图谱由35项不同研究(涵盖678名成年人)汇编而成,另一个是对982名成年人进行的OneK1K研究。由于细胞类型之间的平均转录差异在各个年龄十分位数中保持恒定,因此几乎没有证据支持细胞类型身份趋同的另一种机制。促进激活和干性的关键通路在衰老的T细胞中下调,而在老年人中,CD8 TEM和CD4 CTL表现出更高的炎症反应和细胞毒性。炎症信号通路的升高,如通过NF-κB的MAPK和TNF-α信号通路,在所有衰老的免疫细胞中也都存在,尤其是在效应性免疫细胞中。这一随着年龄增长转录身份丧失的发现具有多重意义,从对衰老机制的基本生物学理解到对老年人免疫调节功效的临床观点。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e00c/11634704/1963a7ab70ec/ACEL-23-e14306-g001.jpg

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