College of Life Science and Technology, Huazhong University of Science and Technology, Wuhan, China.
National Engineering Research Center for Nanomedicine, Huazhong University of Science and Technology, Wuhan, China.
Front Cell Infect Microbiol. 2020 Oct 22;10:570261. doi: 10.3389/fcimb.2020.570261. eCollection 2020.
The skin represents the exterior interface between the human body with the environment while providing a home to trillions of the commensal microorganisms-collectively referred to as the skin microbiota. These microbes that coexist in an established balance play a pivotal role in the protection of cutaneous health and the orchestration of skin homeostasis. However, the well-controlled but delicate balance can be perturbed by alterations in the skin microbial communities, namely, dysbiosis, often due to commensals defeated by pathogens competing for space and nutrients, which leads to the occurrence of multiple cutaneous disorders. In view of this, the analysis of skin microbiota constituents in skin diseases is crucial for defining the role of commensal microbes and treatment of skin diseases. Emerging evidence shows that the ecology-based therapy of microbial transplantation has been proven as a valid therapeutic strategy for cutaneous disorders caused by skin microbial dysbiosis. Although its mechanism is not well-understood, there are already some applications for ecology-based therapy with the aim of correcting the imbalances on the cutaneous ecosystem. In this review, we summarize the interactions between dysbiosis and the cutaneous disorders, including homeostasis and dysbiosis of skin microbiota, microbial composition in skin diseases, and the mechanisms and applications of reversing or ameliorating the dysbiosis by the targeted manipulation of the skin microbiota, which may contribute to aid development of therapeutic modality for ecology-based therapy.
皮肤是人体与环境之间的外部界面,同时为生活在其中的数以万亿计的共生微生物(统称为皮肤微生物群)提供了家园。这些微生物在既定的平衡中共存,对保护皮肤健康和协调皮肤稳态起着至关重要的作用。然而,由于与病原体竞争空间和营养的共生体被击败,皮肤微生物群落的改变,即微生态失调,往往会打破这种平衡,导致多种皮肤疾病的发生。鉴于此,分析皮肤疾病中的皮肤微生物群组成对于确定共生微生物的作用和治疗皮肤疾病至关重要。新出现的证据表明,基于微生物移植的生态疗法已被证明是治疗由皮肤微生物失调引起的皮肤疾病的有效治疗策略。尽管其机制尚不清楚,但已经有一些基于生态的治疗应用,旨在纠正皮肤生态系统的失衡。在这篇综述中,我们总结了微生态失调与皮肤疾病之间的相互作用,包括皮肤微生物群的稳态和失调、皮肤疾病中的微生物组成,以及通过靶向操纵皮肤微生物群来逆转或改善微生态失调的机制和应用,这可能有助于辅助开发基于生态的治疗方法。