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普雷沃氏菌属 CP 可通过减轻肌肉质量损失和功能下降来缓解肌肉减少症。

Prevotella copri alleviates sarcopenia via attenuating muscle mass loss and function decline.

机构信息

National Clinical Research Center for Geriatrics, West China Hospital, Sichuan University, Chengdu, China.

Department of Geriatrics, West China Hospital, Sichuan University, Chengdu, China.

出版信息

J Cachexia Sarcopenia Muscle. 2023 Oct;14(5):2275-2288. doi: 10.1002/jcsm.13313. Epub 2023 Aug 17.

Abstract

BACKGROUND

The gut microbiome and fecal metabolites have been found to influence sarcopenia, but whether there are potential bacteria that can alleviate sarcopenia has been under-investigated, and the molecular mechanism remains unclear.

METHODS

To investigate the relationships between the gut microbiome, fecal metabolites and sarcopenia, subjects were selected from observational multi-ethnic study conducted in Western China. Sarcopenia was diagnosed according to the criteria of the Asian Working Group for Sarcopenia 2014. The gut microbiome was profiled by shotgun metagenomic sequencing. Untargeted metabolomic analysis was performed to analyse the differences in fecal metabolites. We investigated bacterium with the greatest relative abundance difference between healthy individuals and sarcopenia patients, and the differences in metabolites associated with the bacteria, to verify its effects on muscle mass and function in a mouse model.

RESULTS

The study included 283 participants (68.90% females, mean age: 66.66 years old) with and without sarcopenia (141 and 142 participants, respectively) and from the Han (98 participants), Zang (88 participants) and Qiang (97 participants) ethnic groups. This showed an overall reduction (15.03% vs. 20.77%, P = 0.01) of Prevotella copri between the sarcopenia and non-sarcopenia subjects across the three ethnic groups. Functional characterization of the differential bacteria showed enrichment (odds ratio = 15.97, P = 0.0068) in branched chain amino acid (BCAA) metabolism in non-sarcopenia group. A total of 13 BCAA and their derivatives have relatively low levels in sarcopenia. In the in vivo experiment, we found that the blood BCAA level was higher in the mice gavaged with live P. copri (LPC) (P < 0.001). The LPC mice had significantly longer wire and grid hanging time (P < 0.02), longer time on rotor (P = 0.0001) and larger grip strength (P < 0.0001), indicating better muscle function. The weight of gastrocnemius mass and rectus femoris mass (P < 0.05) was higher in LPC mice. The micro-computed tomography showed a larger leg area (P = 0.0031), and a small animal analyser showed a higher lean mass ratio in LPC mice (P = 0.0157), indicating higher muscle mass.

CONCLUSIONS

The results indicated that there were lower levels of both P. copri and BCAA in sarcopenia individuals. In vivo experiments, gavage with LPC could attenuate muscle mass and function decline, indicating alleviating sarcopenia. This suggested that P. copri may play a therapeutic potential role in the management of sarcopenia.

摘要

背景

肠道微生物群和粪便代谢物已被发现影响肌肉减少症,但是否存在潜在的细菌可以缓解肌肉减少症仍研究不足,其分子机制尚不清楚。

方法

为了研究肠道微生物群、粪便代谢物与肌肉减少症之间的关系,我们从中国西部进行的观察性多民族研究中选择了受试者。根据 2014 年亚洲肌肉减少症工作组的标准诊断为肌肉减少症。通过 shotgun 宏基因组测序来分析肠道微生物群。进行非靶向代谢组学分析以分析粪便代谢物的差异。我们调查了健康个体和肌肉减少症患者之间相对丰度差异最大的细菌,以及与该细菌相关的代谢物的差异,以验证其在小鼠模型中对肌肉质量和功能的影响。

结果

该研究纳入了 283 名参与者(68.90%为女性,平均年龄:66.66 岁),其中有和没有肌肉减少症的参与者分别为 141 名和 142 名,分别来自汉族(98 名)、藏族(88 名)和羌族(97 名)。结果显示,在三个民族中,肌肉减少症患者的普雷沃氏菌属 copri(15.03%对 20.77%,P=0.01)总体减少。差异细菌的功能特征显示,非肌肉减少症组中支链氨基酸(BCAA)代谢富集(比值比=15.97,P=0.0068)。13 种 BCAA 及其衍生物在肌肉减少症患者中含量较低。在体内实验中,我们发现用活菌普雷沃氏菌属 copri(LPC)灌胃的小鼠血液中的 BCAA 水平更高(P<0.001)。LPC 小鼠的线悬挂时间和网格悬挂时间更长(P<0.02),在转棒上的时间更长(P=0.0001),握力更大(P<0.0001),表明肌肉功能更好。LPC 小鼠的比目鱼肌和股直肌质量更高(P<0.05)。微型计算机断层扫描显示腿部区域更大(P=0.0031),小动物分析仪显示 LPC 小鼠的瘦肉质量比更高(P=0.0157),表明肌肉质量更高。

结论

结果表明肌肉减少症患者的普雷沃氏菌属 copri 和 BCAA 水平均较低。体内实验中,LPC 灌胃可减轻肌肉质量和功能下降,表明可缓解肌肉减少症。这表明普雷沃氏菌属 copri 可能在肌肉减少症的治疗中具有潜在的治疗作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f851/10570070/c640156f8490/JCSM-14-2275-g001.jpg

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