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探索人类毛囊微生物组。

Exploring the human hair follicle microbiome.

机构信息

Monasterium Laboratory, Münster, Germany.

Zoological Institute, Christian-Albrechts University Kiel, Kiel, Germany.

出版信息

Br J Dermatol. 2021 May;184(5):802-815. doi: 10.1111/bjd.19461. Epub 2021 Feb 18.

Abstract

Human hair follicles (HFs) carry complex microbial communities that differ from the skin surface microbiota. This likely reflects that the HF epithelium differs from the epidermal barrier in that it provides a moist, less acidic, and relatively ultraviolet light-protected environment, part of which is immune-privileged, thus facilitating microbial survival. Here we review the current understanding of the human HF microbiome and its potential physiological and pathological functions, including in folliculitis, acne vulgaris, hidradenitis suppurativa, alopecia areata and cicatricial alopecias. While reviewing the main human HF bacteria (such as Propionibacteria, Corynebacteria, Staphylococci and Streptococci), viruses, fungi and parasites as human HF microbiome constituents, we advocate a broad view of the HF as an integral part of the human holobiont. Specifically, we explore how the human HF may manage its microbiome via the regulated production of antimicrobial peptides (such as cathelicidin, psoriasin, RNAse7 and dermcidin) by HF keratinocytes, how the microbiome may impact on cytokine and chemokine release from the HF, and examine hair growth-modulatory effects of antibiotics, and ask whether the microbiome affects hair growth in turn. We highlight major open questions and potential novel approaches to the management of hair diseases by targeting the HF microbiome.

摘要

人类毛囊(HFs)携带复杂的微生物群落,与皮肤表面微生物群不同。这可能反映出 HF 上皮与表皮屏障不同,因为它提供了一个湿润、酸性较低且相对紫外线保护的环境,其中一部分是免疫特权的,从而有利于微生物的生存。在这里,我们回顾了人类 HF 微生物组的现有认识及其潜在的生理和病理功能,包括在毛囊炎、寻常痤疮、化脓性汗腺炎、斑秃和瘢痕性脱发中。在回顾主要的人类 HF 细菌(如丙酸杆菌、棒状杆菌、葡萄球菌和链球菌)、病毒、真菌和寄生虫作为人类 HF 微生物组的组成部分时,我们提倡将 HF 作为人类整体生物群落的一个组成部分的广泛观点。具体来说,我们探讨了人类 HF 如何通过 HF 角质形成细胞有调节地产生抗菌肽(如 cathelicidin、psoriasin、RNAse7 和 dermcidin)来管理其微生物组,微生物组如何影响 HF 中细胞因子和趋化因子的释放,并检查抗生素对毛发生长的调节作用,以及询问微生物组是否反过来影响毛发生长。我们强调了主要的开放性问题和通过靶向 HF 微生物组来管理头发疾病的潜在新方法。

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