14.3
人类皮肤是一个复杂的生态系统,栖息着包括细菌、真菌和病毒在内的多种微生物群落。这一微生物组在维持皮肤健康以及抵御病原体入侵方面发挥着关键作用。微生物群落的组成在身体不同部位存在显著差异,主要受局部湿度和皮脂分泌水平的影响。
皮肤微生物群的区域差异
Cutibacterium acnes 主要定植于皮脂腺…
皮肤上寄居着多种多样的微生物群落,包括细菌和真菌。
由于不同部位的湿度和油脂水平不同,微生物组成在身体各区域之间存在差异。
油性区域(如前额)主要由Cutibacterium acnes占据。
这些细菌以皮脂为食,产生丙酸,从而降低皮肤的pH值并抑制病原体生长。
头皮等潮湿多油的部位也适合真菌生长,例如 马拉色菌在易感个体中,宿主对真菌代谢产物的炎症反应可导致头皮屑形成。
潮湿的区域(如腋窝)栖居着葡萄球菌和棒状杆菌等细菌种类。
这些细菌可代谢汗液中的成分,并产生抑制有害微生物的抗菌化合物。
干燥区域(如前臂)含有来自主要门类的细菌,包括放线菌门(Actinobacteriota)、拟杆菌门(Bacteroidota)、假单胞菌门(Pseudomonadota)和芽孢杆菌门(Bacillota)。
在这些区域,表皮葡萄球菌(Staphylococcus epidermidis)会产生如细菌素等抗菌肽,抑制病原体并有助于维持皮肤健康。
View the full transcript and gain access to JoVE Core videos
Q1: Why does microbial composition differ across different areas of the skin?
Microbial composition varies across skin regions due to differences in moisture and sebum levels. Oily areas like the forehead support bacteria such as Cutibacterium acnes, while moist regions like the scalp harbor fungi including Malassezia furfur. Dry areas like the forearms contain greater microbial diversity from major bacterial phyla. These environmental conditions determine which microbes can thrive in each location.
Q2: What role does Cutibacterium acnes play in skin health?
Cutibacterium acnes dominates oily skin areas and metabolizes sebum to produce propionic acid, which lowers skin pH and creates a hostile environment for pathogens. This acidification contributes to the skin's innate defense system by restricting pathogen growth. The bacteria's metabolic activity helps maintain skin health and prevent harmful microbial colonization.
Q3: How do bacteria in moist skin areas like the armpits protect against harmful microbes?
Staphylococcus and Corynebacterium species inhabit moist areas such as the armpits and metabolize sweat components to produce antimicrobial compounds. These metabolites inhibit the colonization and growth of harmful microbes, providing a protective function. This antimicrobial activity helps maintain a balanced microbial environment and supports skin health.
Q4: What antimicrobial defenses does Staphylococcus epidermidis provide on dry skin?
Staphylococcus epidermidis colonizes dry areas like the forearms and secretes antimicrobial peptides called bacteriocins. These peptides suppress pathogenic bacteria and help maintain a balanced microbial environment. By producing these antimicrobial compounds, S. epidermidis plays a critical protective role in supporting skin health.
Q5: What causes dandruff in relation to skin fungi?
Malassezia furfur, a fungus that colonizes moist and oily regions like the scalp, can trigger dandruff in susceptible individuals. The fungus produces metabolites that provoke host inflammatory responses, disrupting normal skin homeostasis. While generally commensal, overgrowth of M. furfur leads to the characteristic symptoms and scaling associated with dandruff.
Q6: How do bacteriophages contribute to skin microbiome balance?
Bacteriophages are viruses that infect specific bacterial hosts within the skin microbiome. By targeting and controlling bacterial populations, bacteriophages of the human virome influence bacterial population dynamics and contribute to microbial balance on the skin surface. This viral-bacterial interplay is essential for maintaining dermatological health and resisting infection.
Q7: What bacterial phyla are found in dry skin regions?
Dry areas like the forearms contain representatives from major bacterial phyla including Actinobacteriota, Bacteroidota, Pseudomonadota, and Bacillota. These regions show greater microbial diversity compared to oily or moist areas. This diverse bacterial community contributes to skin health through various metabolic and antimicrobial functions.