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微生物参考框架揭示了清洁后皮肤微生物群的明显变化。

Microbial Reference Frames Reveal Distinct Shifts in the Skin Microbiota after Cleansing.

作者信息

Sfriso Riccardo, Claypool Joshua

机构信息

DSM Nutritional Products, Personal Care, Wurmisweg 576, CH-4303 Kaiseraugst, Switzerland.

DSM Nutritional Products, Nutrition Innovation Center, Lexington, MA 02421, USA.

出版信息

Microorganisms. 2020 Oct 23;8(11):1634. doi: 10.3390/microorganisms8111634.

Abstract

Skin cleansing represents a process of mechanical and chemical removal of dirt, pollutants as well as microbiota from the skin. While skin cleansing can help maintain good health, protect us from infections, illnesses and ailments, skin cleansing can also strip away lipids and moisture from the skin, leading to irritation, barrier impairment and disturbance of the delicate cutaneous microbiome. This study investigated how skin cleansing impacts skin's microbial composition. Thirty Caucasian women were enrolled in a placebo controlled clinical study where participants applied on their volar forearms a liquid body wash twice daily for 1 week in order to mimic frequent showering. Skin microbiome samples were collected by swabbing at defined timepoints and 16S rRNA sequencing was performed. Using "reference frames", we could identify shifts in the microbial composition and several microbiota were identified as being characteristically associated with the presence of saccharide isomerate, a well-known skin moisturizer. The microbial shift was quite immediate, and we could observe it already at 1 h post cleansing. Interestingly, the new microbial composition reached a certain dynamic equilibrium at day 1 which was then maintained until the end of the study. , a potentially beneficial carotenoid-producer microorganism, was enriched by the active treatment and, at the same time, the abundance of several potential pathogenic taxa, and diminished.

摘要

皮肤清洁是一个从皮肤上去除污垢、污染物以及微生物群的机械和化学过程。虽然皮肤清洁有助于保持健康,保护我们免受感染、疾病和病痛,但它也会去除皮肤中的脂质和水分,导致皮肤刺激、屏障受损以及破坏脆弱的皮肤微生物群。本研究调查了皮肤清洁如何影响皮肤的微生物组成。30名白人女性参与了一项安慰剂对照的临床研究,参与者在其非优势前臂上每天涂抹两次沐浴露,持续1周,以模拟频繁淋浴。在规定的时间点通过擦拭收集皮肤微生物群样本,并进行16S rRNA测序。使用“参考框架”,我们可以识别微生物组成的变化,并确定几种微生物群与一种著名的皮肤保湿剂——糖类异构体的存在具有特征性关联。微生物变化相当迅速,我们在清洁后1小时就可以观察到。有趣的是,新的微生物组成在第1天达到了一定的动态平衡,然后一直维持到研究结束。一种潜在有益的类胡萝卜素产生微生物通过活性处理得以富集,与此同时,几种潜在致病类群的丰度降低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/84ad/7690701/940d9959ea4f/microorganisms-08-01634-g001.jpg

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