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Comparison of Healthy and Dandruff Scalp Microbiome Reveals the Role of Commensals in Scalp Health

机译:健康和头皮头皮Microbiome的比较揭示了共生在头皮健康中的作用

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Several scalp microbiome studies from different populations have revealed the association of dandruff with bacterial and fungal dysbiosis. However, the functional role of scalp microbiota in scalp disorders and health remains scarcely explored. Here, we examined the bacterial and fungal diversity of the scalp microbiome and their potential functional role in the healthy and dandruff scalp of 140 Indian women. Propionibacterium acnes and Staphylococcus epidermidis emerged as the core bacterial species, where the former was associated with a healthy scalp and the latter with dandruff scalp. Along with the commonly occurring Malassezia species (M. restricta and M. globosa) on the scalp, a strikingly high association of dandruff with yet uncharacterized Malassezia species was observed in the core mycobiome. Functional analysis showed that the fungal microbiome was enriched in pathways majorly implicated in cell-host adhesion in the dandruff scalp, while the bacterial microbiome showed a conspicuous enrichment of pathways related to the synthesis and metabolism of amino acids, biotin, and other B-vitamins, which are reported as essential nutrients for hair growth. A systematic measurement of scalp clinical and physiological parameters was also carried out, which showed significant correlations with the microbiome and their associated functional pathways. The results point toward a new potential role of bacterial commensals in maintaining the scalp nutrient homoeostasis and highlights an important and yet unknown role of the scalp microbiome, similar to the gut microbiome. This study, therefore, provides new perspectives on the better understanding of the pathophysiology of dandruff.
机译:来自不同种群的几项头皮微生物研究已经揭示了头皮屑与细菌和真菌脱泻的关联。然而,头皮微生物群在头皮疾病和健康中的功能作用仍然几乎没有探索。在这里,我们检查了头皮微生物组的细菌和真菌多样性及其在140名印度女性的健康和头皮头皮中的潜在功能作用。痤疮丙酸杆菌和葡萄球菌表现为核心细菌种类,其中前者与健康的头皮和后者有头划颅骨头皮有关。随着头皮上的常见的Malassezia(M. Restricta和M. Globosa)以及在核心霉眼组中观察到具有尚未表达无表的Malassezia物种的惊人高位。功能分析表明,富含细胞宿主粘附的途径中富集的真菌微生物组在颅骨头皮中的细胞 - 宿主粘附中,而细菌微生物组显示出与氨基酸,生物素和其他B-维生素的合成和代谢相关的途径的显着富集。据报道,其作为头发生长的基本营养素。还进行了头皮临床和生理参数的系统测量,表明与微生物组及其相关的功能途径显着相关。结果指出了细菌共生在维持头皮营养性同性恋中的新潜在作用,并突出了头皮微生物组的重要且未知的作用,类似于肠道微生物组。因此,本研究提供了更好地理解头皮屑的病理生理学的新视角。

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