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依赖于核糖型的赤藓糖醇对痤疮丙酸杆菌的生长抑制和促进作用。

Ribotype-dependent growth inhibition and promotion by erythritol in Cutibacterium acnes.

机构信息

Research & Development Center, B Food Science Co., Ltd., Aichi, Japan.

Department of Food, Aroma, and Cosmetic Chemistry, Faculty of Bioindustry, Tokyo University of Agriculture, Hokkaido, Japan.

出版信息

J Cosmet Dermatol. 2022 Oct;21(10):5049-5057. doi: 10.1111/jocd.14958. Epub 2022 May 16.

Abstract

BACKGROUND

The close balance between Cutibacterium acnes and the skin flora, particularly between C. acnes phylotypes, has been suggested to play an important role in the onset of acne. C. acnes has been classified into ribotypes (RTs) based on polymorphisms in its 16S rRNA sequence, with RT4 and RT5 being associated with the onset of acne and RT6 with healthy skin.

AIMS

The present study investigated the impact of erythritol on the growth of C. acnes strains classified into different RTs and attempted to elucidate the molecular mechanisms underlying its effects.

METHODS

Culturing tests were performed on several RTs of C. acnes with or without erythritol. A transcriptional analysis of HM554 (RT6) and HM514 (RT5) was also conducted.

RESULTS

The growth of RT2 and RT6, RTs associated with healthy skin, was significantly promoted in a medium containing 10% (W/W) erythritol, whereas that of RT1, RT3, RT4, RT5, and RT8, RTs associated with the development of acne, was inhibited. A RNA-seq analysis of HM554 showed that the expression of six genes (EIGs) potentially involved in carbohydrate metabolism was strongly induced by the presence of 10% erythritol (Log fold change >2.0 and p-value <0.05). A comparative expression analysis by qPCR revealed that EIGs other than g3pD were strongly induced by erythritol in HM514, similar to HM554, whereas g3pD was only slightly induced.

CONCLUSION

Erythritol inhibited the growth of RTs associated with acne and promoted that of RTs associated with healthy skin. The enzyme encoded by g3pD may play an important role in the metabolism of erythritol and the dissolution of its growth inhibitory effects on C. acnes.

摘要

背景

痤疮丙酸杆菌(Cutibacterium acnes,C. acnes)与皮肤菌群之间的微妙平衡,特别是 C. acnes 菌株之间的平衡,被认为在痤疮的发病机制中起着重要作用。根据其 16S rRNA 序列的多态性,C. acnes 被分为核糖体分型(ribotype,RT),其中 RT4 和 RT5 与痤疮的发病有关,而 RT6 与健康皮肤有关。

目的

本研究旨在探讨赤藓糖醇对不同 RT 分类的 C. acnes 菌株生长的影响,并试图阐明其作用的分子机制。

方法

在含有或不含有赤藓糖醇的培养基中对几种 C. acnes RT 进行培养试验。还对 HM554(RT6)和 HM514(RT5)进行了转录分析。

结果

在含有 10%(W/W)赤藓糖醇的培养基中,与健康皮肤相关的 RT2 和 RT6 的生长明显得到促进,而与痤疮发展相关的 RT1、RT3、RT4、RT5 和 RT8 的生长则受到抑制。对 HM554 的 RNA-seq 分析显示,存在 10%赤藓糖醇时,六个可能参与碳水化合物代谢的基因(EIGs)的表达被强烈诱导(Log 倍变化>2.0,p 值<0.05)。通过 qPCR 进行的比较表达分析显示,与 HM554 相似,除了 g3pD 之外,EIGs 在 HM514 中也被赤藓糖醇强烈诱导,而 g3pD 则只是轻度诱导。

结论

赤藓糖醇抑制了与痤疮相关的 RTs 的生长,促进了与健康皮肤相关的 RTs 的生长。g3pD 编码的酶可能在赤藓糖醇的代谢和溶解其对 C. acnes 生长的抑制作用中发挥重要作用。

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