膳食硒缺乏加速衰老端粒人源化小鼠衰老相关肠道微生物变化的发生,其中嗜粘阿克曼氏菌最为突出,可缓解硒缺乏诱导的2型糖尿病。

IF 7.1 1区 医学 Q1 Biochemistry, Genetics and Molecular Biology
Aging Cell Pub Date : 2025-06-20 DOI:10.1111/acel.70130
Ying-Chen Huang, Hsin-Yi Lu, Li Zhang, Alicia Olivier, Tung-Lung Wu, Chuan-Yu Hsu, Caleb LeGrand, Huawei Zeng, Samantha Curran, Qingzhou Wang, Ramakrishna Nannapaneni, Xue Zhang, Max Ticó, Marco Mariotti, Ryan T. Y. Wu, Gerald F. Combs Jr, Wen-Hsing Cheng
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引用次数: 0

摘要

先前的研究表明,小鼠饮食中硒(Se)的缺乏会重塑肠道微生物群,加剧健康寿命的恶化(如2型糖尿病),并矛盾地激活有益的长寿途径。本研究表明,膳食硒缺乏加速了老年端粒人源化C57BL/6J糖尿病小鼠的许多与年龄相关的肠道微生物变化,以两性二态的方式发生,其中雄性嗜粘Akkermansia muciniphila的富集程度最高。然而,在成年或中年雄性C57BL/6J野生型小鼠中,饲粮硒缺乏并不会增加嗜粘乳杆菌。口腔灌胃嗜粘杆菌可减轻硒缺乏诱导的2型糖尿病样症状,逆转粘膜屏障功能障碍和肠道炎症,并导致常规条件下成熟野生型小鼠肠道某些细菌的共生和竞争抑制变化趋势。嗜粘单胞杆菌的有益作用似乎与肝脏和肌肉中对膳食硒缺乏敏感的硒蛋白(如GPX1、SELENOH和SELENOW)无关。总之,这些结果表明,膳食硒缺乏加速了年龄相关的嗜粘杆菌在严重胰岛素抵抗和胰腺衰老的老年雄性小鼠中的富集,表明硒缺乏可能通过重塑肠道微生物群来缓解高血糖并部分补偿健康衰退。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Dietary Selenium Deficiency Accelerates the Onset of Aging-Related Gut Microbial Changes in Aged Telomere-Humanized Mice, With Akkermansia muciniphila Being the Most Prominent and Alleviating Selenium Deficiency-Induced Type 2 Diabetes

Dietary Selenium Deficiency Accelerates the Onset of Aging-Related Gut Microbial Changes in Aged Telomere-Humanized Mice, With Akkermansia muciniphila Being the Most Prominent and Alleviating Selenium Deficiency-Induced Type 2 Diabetes

Previous studies have shown that dietary selenium (Se) deficiency in mice reshapes gut microbiota, exacerbates healthspan deterioration (e.g., type 2 diabetes), and paradoxically activates beneficial longevity pathways. This study demonstrated that dietary Se deficiency accelerated many age-related gut microbial changes in aged telomere-humanized C57BL/6J diabetic mice in a sexually dimorphic manner, with Akkermansia muciniphila showing the greatest enrichment in males. However, dietary Se deficiency did not enrich A. muciniphila in mature or middle-aged male C57BL/6J wild-type mice. Oral gavage of A. muciniphila alleviated Se deficiency-induced type 2 diabetes-like symptoms, reversed mucosal barrier dysfunction and gut inflammation, and resulted in a trend of symbiotic and competitive suppression changes in certain gut bacteria in mature wild-type mice under conventional conditions. The beneficial effects of A. muciniphila appeared to be independent of selenoproteins sensitive to dietary Se deficiency, such as GPX1, SELENOH, and SELENOW, in the liver and muscle. Altogether, these results show that dietary Se deficiency accelerates age-related A. muciniphila enrichment specifically in aged male mice with severe insulin resistance and pancreatic senescence, indicating a potential hormetic response to Se deficiency through reshaped gut microbiota, which alleviates hyperglycemia and partially compensates for healthspan decline.

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来源期刊
Aging Cell
Aging Cell 生物-老年医学
CiteScore
14.40
自引率
2.60%
发文量
212
审稿时长
8 weeks
期刊介绍: Aging Cell, an Open Access journal, delves into fundamental aspects of aging biology. It comprehensively explores geroscience, emphasizing research on the mechanisms underlying the aging process and the connections between aging and age-related diseases.
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