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萘替芬抑制红酵母产色素后其生存力和抗逆性降低。

Reduced Survival and Resistance of Rhodotorula mucilaginosa Following Inhibition of Pigment Production by Naftifine.

机构信息

Department of pathogen biology, College of Basic Medical Sciences, Chongqing Medical University, Chongqing, 400016, China.

Department of Infectious Diseases, The First Affiliated Hospital of Chongqing Medical University, Chongqing, 400016, China.

出版信息

Curr Microbiol. 2023 Jul 15;80(9):285. doi: 10.1007/s00284-023-03388-9.

Abstract

Pigments produced by micro-organisms could contribute to their pathogenesis and resistance. The investigation into the red pigment of R. mucilaginosa and its ability to survive and resist has not yet been explored. This study aimed to investigate the survival and resistance of the R. mucilaginosa CQMU1 strain following inhibition of pigment production by naftifine and its underlying mechanism. The red-pigmented Rhodotorula mucilaginosa CQMU1 yeast was isolated from an infected toenail of a patient with onychomycosis. Cultivation of R. mucilaginosa in liquid and solid medium showed the effect of naftifine after treatment. Then, analysis of phagocytosis and tolerance to heat or chemicals of R. mucilaginosa was used to evaluate the survival and resistance of yeast to different treatments. Naftifine reversibly inhibited the pigmentation of R. mucilaginosa CQMU1 in solid and liquid media. Depigmented R. mucilaginosa CQMU1 showed increased susceptibility toward murine macrophage cells RAW264.7 and reduced resistance toward different types of chemicals, such as 1.5-M NaCl and 0.5% Congo red. Inhibition of pigment production by naftifine affected the survival and growth of R. mucilaginosa and its resistance to heat and certain chemicals. The results obtained could further elucidate the target of new mycosis treatment.

摘要

微生物产生的色素可能有助于其发病机制和耐药性。目前尚未研究粘红酵母的红色素及其生存和抵抗能力。本研究旨在探讨抑制萘替芬对粘红酵母 CQMU1 菌株的生存和抵抗能力的影响及其潜在机制。从一名甲真菌病患者感染的趾甲中分离出红色粘性红酵母 CQMU1 酵母。在液体和固体培养基中培养粘红酵母,显示出萘替芬处理后的效果。然后,通过分析粘红酵母对热或化学物质的吞噬作用和耐受性来评估酵母对不同处理的生存和抵抗能力。萘替芬可逆性地抑制粘红酵母 CQMU1 在固体和液体培养基中的色素沉着。去色素化的粘红酵母 CQMU1 对鼠巨噬细胞 RAW264.7 的敏感性增加,对不同类型的化学物质(如 1.5-M NaCl 和 0.5%刚果红)的抗性降低。萘替芬抑制色素生成影响粘红酵母的生存和生长及其对热和某些化学物质的抵抗能力。所得结果可能进一步阐明新的真菌病治疗靶点。

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