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苯乙酸,一种由阴道共生细菌金黄杆菌产生的抗阴道炎代谢产物。

Phenylacetic acid, an anti-vaginitis metabolite produced by the vaginal symbiotic bacterium Chryseobacterium gleum.

机构信息

Department of Pharmacy, Woosuk University, Wanju, Jeonbuk, 55338, Republic of Korea.

Department of Korean Pharmacy, Woosuk University, Wanju, Jeonbuk, 55338, Republic of Korea.

出版信息

Sci Rep. 2024 May 28;14(1):12226. doi: 10.1038/s41598-024-62947-7.

Abstract

The human microbiome contains genetic information that regulates metabolic processes in response to host health and disease. While acidic vaginal pH is maintained in normal conditions, the pH level increases in infectious vaginitis. We propose that this change in the vaginal environment triggers the biosynthesis of anti-vaginitis metabolites. Gene expression levels of Chryseobacterium gleum, a vaginal symbiotic bacterium, were found to be affected by pH changes. The distinctive difference in the metabolic profiles between two C. gleum cultures incubated under acidic and neutral pH conditions was suggested to be an anti-vaginitis molecule, which was identified as phenylacetic acid (PAA) by spectroscopic data analysis. The antimicrobial activity of PAA was evaluated in vitro, showing greater toxicity toward Gardnerella vaginalis and Candida albicans, two major vaginal pathogens, relative to commensal Lactobacillus spp. The activation of myeloperoxidase, prostaglandin E, and nuclear factor-κB, and the expression of cyclooxygenase-2 were reduced by an intravaginal administration of PAA in the vaginitis mouse model. In addition, PAA displayed the downregulation of mast cell activation. Therefore, PAA was suggested to be a messenger molecule that mediates interactions between the human microbiome and vaginal health.

摘要

人类微生物组包含调节代谢过程的遗传信息,以响应宿主的健康和疾病。虽然正常情况下阴道的 pH 值保持酸性,但在感染性阴道炎中 pH 值会升高。我们提出,阴道环境的这种变化会引发抗阴道炎代谢物的生物合成。我们发现,阴道共生菌黄杆菌(Chryseobacterium gleum)的基因表达水平受到 pH 变化的影响。在酸性和中性 pH 条件下培养的两种 C. gleum 培养物的代谢谱的显著差异被认为是一种抗阴道炎分子,通过光谱数据分析鉴定为苯乙酸(PAA)。体外评估了 PAA 的抗菌活性,发现它对两种主要阴道病原体阴道加德纳菌和白色念珠菌的毒性大于共生乳杆菌属。在阴道炎小鼠模型中,PAA 通过阴道内给药可降低髓过氧化物酶、前列腺素 E 和核因子-κB 的激活以及环氧化酶-2 的表达。此外,PAA 显示出对肥大细胞激活的下调作用。因此,PAA 被认为是一种信使分子,介导人类微生物组与阴道健康之间的相互作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6a7f/11133378/c57c03e0740e/41598_2024_62947_Fig1_HTML.jpg

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