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Association Between Dysbiosis in the Gut Microbiota of Primary Osteoporosis Patients and Bone Loss

Aging and Disease(2023)SCI 2区

Univ Florida | Florida State Univ

Cited 2|Views6
Abstract
In recent decades, gut microbiome research has experienced significant growth, driven by technological advances that enable quantifying bacterial taxa with greater precision. Age, diet, and living environment have emerged as three key factors influencing gut microbes. Dysbiosis, resulting from alterations in these factors, may lead to changes in bacterial metabolites that regulate pro- and anti-inflammatory processes and consequently impact bone health. Restoration of a healthy microbiome signature could mitigate inflammation and potentially reduce bone loss associated with osteoporosis or experienced by astronauts during spaceflight. However, current research is hindered by contradictory findings, insufficient sample sizes, and inconsistency in experimental conditions and controls. Despite progress in sequencing technology, defining a healthy gut microbiome across global populations remains elusive. Challenges persist in identifying accurate gut bacterial metabolics, specific taxa, and their effects on host physiology. We suggest greater attention be directed towards this issue in Western countries as the cost of treating osteoporosis in the United States reaches billions of dollars annually, with expenses projected to continue rising.
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Next-Generation-sequencing,microbiome,16SrRNA,dysbiosis,aging,osteoporosis
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要点】:本文探讨了原发性骨质疏松症患者肠道微生物群失衡与骨丢失之间的关联,并提出了恢复健康微生物群以减少炎症和骨丢失的可能性。

方法】:研究通过分析现有文献,总结了年龄、饮食和居住环境对肠道微生物的影响,并讨论了肠道细菌代谢物如何调节炎症过程进而影响骨健康。

实验】:未提供具体实验细节,但论文指出当前研究因样本量不足、实验条件与控制不一致等问题而受到限制;未提及使用的数据集名称和具体实验结果。