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衰老通过TGF-β-Smad3信号通路引起细胞周期阻滞变化,从而对结肠上皮类器官的形成和生长产生影响。

Effect of aging on the formation and growth of colonic epithelial organoids by changes in cell cycle arrest through TGF-β-Smad3 signaling.

作者信息

Jo Min Kyoung, Moon Chang Mo, Jeon Hyeon-Jeong, Han Yerim, Lee Eun Sook, Kwon Ji-Hee, Yang Kyung-Min, Ahn Young-Ho, Kim Seong-Eun, Jung Sung-Ae, Kim Tae Il

机构信息

Department of Internal Medicine, College of Medicine, Ewha Womans University, 1071 Anyangcheon-ro, Yangcheon-gu, Seoul, 07985, Republic of Korea.

Inflammation-Cancer Microenvironment Research Center, College of Medicine, Ewha Womans University, 25, Magokdong-ro 2-gil, Gangseo-gu, Seoul, 07804, Republic of Korea.

出版信息

Inflamm Regen. 2023 Jul 13;43(1):35. doi: 10.1186/s41232-023-00282-6.

Abstract

BACKGROUND

This study aimed to investigate how aging alters the homeostasis of the colonic intestinal epithelium and regeneration after tissue injury using organoid models and to identify its underlying molecular mechanism.

METHODS

To investigate aging-related changes in the colonic intestinal epithelium, we conducted organoid cultures from old (older than 80 weeks) and young (6-10 weeks) mice and compared the number and size of organoids at day 5 of passage 0 and the growth rate of organoids between the two groups.

RESULTS

The number and size of organoids from old mice was significantly lower than that from young mice (p < 0.0001) at day 5 of passage 0. The growth rate of old-mouse organoids from day 4 to 5 of passage 0 was significantly slower than that of young-mouse organoids (2.21 times vs. 1.16 times, p < 0.001). RNA sequencing showed that TGF-β- and cell cycle-associated genes were associated with the aging effect. With regard to mRNA and protein levels, Smad3 and p-Smad3 in the old-mouse organoids were markedly increased compared with those in the young-mouse organoids. Decreased expression of ID1, increased expression of p16, and increased cell cycle arrest were observed in the old mouse-organoids. Treatment with SB431542, a type I TGF-β receptor inhibitor, significantly increased the formation and growth of old-mouse organoids, and TGF-β1 treatment markedly suppressed the formation of young-mouse organoids. In the acute dextran sulfate sodium-colitis model and its organoid experiments, the colonic epithelial regeneration after tissue injury in old mice was significantly decreased compared with young mice.

CONCLUSIONS

Aging reduced the formation ability and growth rate of colonic epithelial organoids by increasing cell cycle arrest through TGF-β-Smad3-p16 signaling.

摘要

背景

本研究旨在利用类器官模型研究衰老如何改变结肠肠上皮的稳态以及组织损伤后的再生情况,并确定其潜在的分子机制。

方法

为了研究结肠肠上皮与衰老相关的变化,我们对老年(80周以上)和年轻(6 - 10周)小鼠进行了类器官培养,并比较了第0代传代第5天时类器官的数量和大小以及两组之间类器官的生长速率。

结果

在第0代传代第5天时,老年小鼠类器官的数量和大小显著低于年轻小鼠(p < 0.0001)。第0代传代第4天至第5天,老年小鼠类器官的生长速率明显慢于年轻小鼠类器官(2.21倍对1.16倍,p < 0.001)。RNA测序表明,TGF-β和细胞周期相关基因与衰老效应有关。在mRNA和蛋白质水平上,老年小鼠类器官中的Smad3和p-Smad3明显高于年轻小鼠类器官。在老年小鼠类器官中观察到ID1表达降低、p16表达增加以及细胞周期停滞增加。用I型TGF-β受体抑制剂SB431542处理显著增加了老年小鼠类器官的形成和生长,而TGF-β1处理则明显抑制了年轻小鼠类器官的形成。在急性葡聚糖硫酸钠结肠炎模型及其类器官实验中,老年小鼠组织损伤后的结肠上皮再生明显低于年轻小鼠。

结论

衰老通过TGF-β-Smad3-p16信号通路增加细胞周期停滞,从而降低结肠上皮类器官的形成能力和生长速率。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3617/10339613/25c9029864d7/41232_2023_282_Fig1_HTML.jpg

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