从肠道微生物群的角度看衰老:挑战和治疗机会

Kanimozhi N V, Sukumar M
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摘要

衰老是一个复杂的生物学过程,受遗传、环境和生活方式等因素的影响。其中,肠道微生物群在整个生命周期中调节健康和疾病方面起着至关重要的作用。这篇综述探讨了衰老和肠道微生物群之间的动态关系,强调了其对年龄相关疾病的影响。随着个体年龄的增长,肠道微生物群的组成和功能发生显著变化,往往导致生态失调——一种与炎症增加、免疫力减弱和代谢紊乱相关的失衡。以慢性低度炎症为特征的炎症现象与肠道微生物改变密切相关,并有助于神经退行性疾病、心血管疾病和代谢紊乱,如肥胖和糖尿病。此外,肠脑轴正在成为神经认知衰老的关键途径,微生物代谢物影响脑功能和神经保护。鉴于这些见解,有针对性的干预措施,如益生菌、益生元和粪便微生物群移植(FMT)正在被探索作为恢复微生物平衡和改善老年人健康结果的潜在策略。饮食、抗生素和药物使用也在塑造肠道微生物群组成方面发挥关键作用,进一步影响寿命和疾病易感性。本文综述了目前关于衰老肠道微生物组的研究,并讨论了通过基于微生物组的策略缓解年龄相关疾病的治疗进展。最后,我们展望了微生物组研究的未来方向,强调了其在老年人精准医疗中的潜力。了解肠道微生物群在衰老中的作用为促进老年人的寿命和提高生活质量提供了新的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Aging through the lens of the gut microbiome: Challenges and therapeutic opportunities
Aging is a complex biological process influenced by genetic, environmental, and lifestyle factors. Among these, the gut microbiome plays a crucial role in modulating health and disease across the lifespan. This review explores the dynamic relationship between aging and the gut microbiome, highlighting its implications for age-related diseases. As individuals age, the gut microbiome undergoes significant compositional and functional changes, often leading to dysbiosis—an imbalance associated with increased inflammation, weakened immunity, and metabolic disorders. The phenomenon of inflammaging, characterized by chronic low-grade inflammation, is closely linked to gut microbial alterations and contributes to neurodegenerative diseases, cardiovascular conditions, and metabolic disorders such as obesity and diabetes. Additionally, the gut-brain axis is emerging as a critical pathway in neurocognitive aging, with microbial metabolites influencing brain function and neuroprotection.
Given these insights, targeted interventions such as probiotics, prebiotics, and fecal microbiota transplantation (FMT) are being explored as potential strategies to restore microbial balance and improve health outcomes in the elderly. Diet, antibiotics, and medication use also play pivotal roles in shaping gut microbiota composition, further influencing longevity and disease susceptibility. This review synthesizes current research on the aging gut microbiome and discusses therapeutic advancements aimed at mitigating age-related diseases through microbiome-based strategies. Finally, we provide a perspective on future directions in microbiome research, emphasizing its potential in precision medicine for aging populations. Understanding the gut microbiome's role in aging offers novel opportunities for promoting longevity and enhancing quality of life in older adults.
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