白色念珠菌
生物
微生物学
殖民地化
白色体
殖民抵抗
拟杆菌
抗生素
拟杆菌
体内
肠道菌群
细胞内
抗药性
共生
细菌
分泌物
突变体
益生菌
寄主(生物学)
胃肠道
表型转换
抗生素耐药性
细胞内寄生虫
体外
菌毛
作者
Animesh A. Mishra,Suzette N. Palmer,Christina Zarek,Laura A. Coughlin,Nicole Poulides,Jana Dakour,Rebecca S. Chiu,Parastoo Sabaeifard,Wenling Li,Aidan C. Morrill,Jiwoong Kim,Shuheng Gan,Cassie L. Behrendt,Monika I. Antczak,Xiaowei Zhan,Sebastian Winter,Joseph M. Ready,Lora V. Hooper,Andrew Y. Koh
标识
DOI:10.1016/j.chom.2026.05.007
摘要
The gut microbiota plays critical roles in constraining Candida albicans colonization of the gastrointestinal (GI) tract, which is a key precursor to disseminated fungal infection in immunocompromised hosts. Depletion of commensal microbiota, such as by antibiotic treatment, increases C. albicans burden and promotes dissemination, yet the mechanisms of colonization resistance remain unclear. Here, we show that microbiota-derived short-chain fatty acids (SCFAs) directly inhibit C. albicans growth by inducing fungal metabolic reprogramming, impairing hexose uptake, and inducing intracellular acidification. In vivo, SCFAs enhance Candida colonization resistance only in the presence of an intact gut microbiome, which drives SCFA-induced taxonomic shifts that augment resistance. A Bacteroides thetaiotaomicron mutant unable to produce SCFAs exhibits diminished capacity to restrict C. albicans colonization, while prebiotic therapy that increases luminal SCFAs enhances C. albicans clearance. These findings define a critical microbiota-metabolite mechanism underlying Candida colonization resistance and suggest strategies to modulate GI fungal burden and prevent invasive disease.
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