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阴道微生物群产生的乳酸通过促进紧密连接蛋白表达增强宫颈阴道上皮屏障完整性。

Lactic acid from vaginal microbiota enhances cervicovaginal epithelial barrier integrity by promoting tight junction protein expression.

机构信息

Life Sciences Discipline, Burnet Institute, 85 Commercial Road, Melbourne, VIC, 3004, Australia.

Department of Microbiology, Monash University, Clayton, VIC, 3168, Australia.

出版信息

Microbiome. 2022 Aug 31;10(1):141. doi: 10.1186/s40168-022-01337-5.

Abstract

BACKGROUND

Women with a cervicovaginal microbiota dominated by Lactobacillus spp. are at reduced risk of acquiring sexually transmitted infections including HIV, but the biological mechanisms involved remain poorly defined. Here, we performed metaproteomics on vaginal swab samples from young South African women (n = 113) and transcriptomics analysis of cervicovaginal epithelial cell cultures to examine the ability of lactic acid, a metabolite produced by cervicovaginal lactobacilli, to modulate genital epithelial barrier function.

RESULTS

Compared to women with Lactobacillus-depleted microbiota, women dominated by vaginal lactobacilli exhibit higher abundance of bacterial lactate dehydrogenase, a key enzyme responsible for lactic acid production, which is independently associated with an increased abundance of epithelial barrier proteins. Physiological concentrations of lactic acid enhance epithelial cell culture barrier integrity and increase intercellular junctional molecule expression.

CONCLUSIONS

These findings reveal a novel ability of vaginal lactic acid to enhance genital epithelial barrier integrity that may help prevent invasion by sexually transmitted pathogens. Video abstract.

摘要

背景

阴道乳杆菌占主导地位的阴道微生物群的女性感染性传播感染(包括 HIV)的风险降低,但相关的生物学机制仍未明确。在这里,我们对来自南非年轻女性(n=113)的阴道拭子样本进行了宏蛋白质组学分析,并对阴道上皮细胞培养物进行了转录组学分析,以研究乳酸(一种由阴道乳杆菌产生的代谢产物)调节生殖道上皮屏障功能的能力。

结果

与乳酸杆菌减少的微生物群女性相比,阴道乳杆菌占主导地位的女性表现出更高丰度的细菌乳酸脱氢酶,这是一种负责乳酸产生的关键酶,其与上皮屏障蛋白的丰度增加独立相关。生理浓度的乳酸可增强上皮细胞培养物的屏障完整性并增加细胞间连接分子的表达。

结论

这些发现揭示了阴道乳酸增强生殖道上皮屏障完整性的新能力,这可能有助于防止性传播病原体的入侵。视频摘要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9e76/9429363/b7f2fc1072a2/40168_2022_1337_Fig1_HTML.jpg

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