甘油
乳酸
细菌
表皮葡萄球菌
发酵
势垒函数
微生物群
微生物学
脂肪酸
生物
人体皮肤
化学
生物化学
食品科学
金黄色葡萄球菌
细胞生物学
遗传学
作者
Neha Salgaonkar,Vinitha Kadamkode,Srikala Kumaran,Prathyusha Mallemala,Ernest Christy,Shanthi Appavoo,A.K. Majumdar,Rupak Mitra,Anindya Dasgupta
摘要
Commensal bacteria play a major role in multiple skin functions by providing the first layer of defense against pathogens and maintaining the skin barrier. Staphylococcus epidermidis is one of the most common skin commensals. In this study, we showed that S. epidermidis ferments glycerol and uses it as a nutrient, while producing short-chain and organic fatty acids, with the most notable being lactic acid. Lactic acid is an alpha-hydroxy acid that inhibits the growth of pathogenic bacteria, without any negative effect on the commensal bacteria itself. Using in vivo experiments, we validated our in vitro results, showing that the skin microbiome is also capable of doing this. Finally, using 2D and 3D skin culture models, we showed that the fermentation of glycerol, mainly lactic acid, as determined by analytical methods, upregulates the expression levels of several key genes that are associated with the barrier properties of the skin. While the hydration effect of glycerol on the skin is well known, our study shows the overall benefits of glycerol on the skin microbiome, while revealing an alternate mode of action of glycerol for multiple skin benefits.
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