亚精胺减轻辐射后小鼠外周血t细胞群的胸腺发育缺陷和衰老。

IF 3.9
Experimental gerontology Pub Date : 2025-01-01 Epub Date: 2024-12-18 DOI:10.1016/j.exger.2024.112646
Kengo Yoshida, Zhenqiu Liu, Yoshiko Kubo, Masahiko Miura, Mika Yamaoka, Hiroko Nagamura, Munechika Misumi, Yoichiro Kusunoki
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引用次数: 0

摘要

T细胞衰老过程可以通过基因毒性因素(包括电离辐射)和代谢控制(如热量限制)来改变;前者加快了这一进程,后者则延缓了这一进程。然而,这些系统因素相互作用导致T细胞衰老的机制尚不清楚。本研究研究了在5 周龄时接受3.8 Gy辐射的小鼠的naïve t细胞池、胸腺细胞数量和转录组,并在13 个月后接受30 mM亚精胺(一种代谢调节剂)治疗。辐照后14 个月,外周血常规naïve CD4和CD8 T细胞数量减少,而虚拟记忆naïve T细胞数量随年龄增长而增加,辐照后进一步增加。然而,这些与辐射相关的变化在随后接受SPD治疗的类似辐照小鼠中并不显著。总胸腺细胞、双阳性胸腺细胞和单阳性胸腺细胞的数量均减少,而SPD处理的小鼠胸腺细胞数量没有减少。对胸腺细胞的RNA测序显示,与未受辐射的对照组小鼠相比,受辐射小鼠胸腺细胞中803个基因表达上调,这些基因在白细胞活化和炎症细胞因子产生中富集。然而,在辐射和spd处理的小鼠中,只有22个基因表达上调,这表明许多辐射诱导的基因表达变化发生逆转。这些发现表明SPD可以减轻辐射引起的t细胞加速老化,特别是通过减轻胸腺生成和炎症的减少。进一步的研究需要探索SPD的恢复潜力及其在加速t细胞衰老中的作用机制。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Spermidine alleviates thymopoiesis defects and aging of the peripheral T-cell population in mice after radiation exposure.

The T cell aging process can be modified by genotoxic factors, including ionizing radiation, and metabolic controls, such as caloric restriction; the former accelerates and the latter retards the process. However, the mechanisms by which these systemic factors interact to cause T cell aging remain unclear. This study investigated the naïve T-cell pool, thymic cellularity, and transcriptome in mice irradiated with 3.8 Gy at 5 weeks of age and treated 13 months later with 30 mM spermidine (SPD), a metabolism regulator. The number of conventional naïve CD4 and CD8 T cells in the peripheral blood decreased 14 months after irradiation whereas the number of virtual memory naïve T cells, which increased with age, further increased by irradiation. However, these radiation-related changes were not significant in similarly irradiated mice that were subsequently treated with SPD. The numbers of total, double-positive, and single-positive thymocytes were decreased by irradiation, whereas none were decreased in the irradiated mice treated with SPD. RNA sequencing of thymus cells revealed 803 upregulated genes in irradiated mice compared with those in non-irradiated control mice, with these genes enriched in leukocyte activation and inflammatory cytokine production. However, only 22 genes were upregulated in irradiated and SPD-treated mice, suggesting a reversal of many radiation-induced gene expression changes. These findings suggest that SPD may alleviate radiation-induced acceleration of T-cell aging, particularly by mitigating reduced thymopoiesis and inflammation. Further research is warranted to explore the rejuvenating potential of SPD and its mechanisms of action in accelerated T-cell aging.

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来源期刊
Experimental gerontology
Experimental gerontology Ageing, Biochemistry, Geriatrics and Gerontology
CiteScore
6.70
自引率
0.00%
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审稿时长
66 days
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