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Pseudolaric Acid A: A Promising Antifungal Agent Against Prevalent Non-albicans Candida Species

热带假丝酵母 碘化丙啶 液泡 微生物学 白色念珠菌 生物 白色体 假丝酵母病 细胞内 活力测定 细胞壁 自噬 酵母 生物化学 化学 细胞 程序性细胞死亡 细胞质 细胞凋亡
作者
Zhen Li,Bin Zhu,Weiqin Chen,Jun Hu,Yingjun Xue,Hongmei Yin,Xiaobo Hu,Weiwei Liu
出处
期刊:Infection and Drug Resistance [Dove Medical Press]
卷期号:Volume 16: 5953-5964 被引量:4
标识
DOI:10.2147/idr.s419646
摘要

The non-albicans Candida (NAC) species have recently gained great importance worldwide due to the increasing proportion in candida causing bloodstream infections. This investigation aimed to explore the efficacy of Pseudolaric acid A (PAA, a diterpenoid derived from Pseudolarix kaempferi) and its synergistic effect with fluconazole (FLC) against NAC species, including C. tropicalis, C. parapsilosis complex, and C. glabrata.The microdilution checkerboard assay and time-killing curves were performed to detect the antifungal efficiency. To examine the integrity of cell walls and membranes, calcofluor white stain and propidium iodide stain were used. The changes of intracellular ultrastructure in Candida cells after treatment were observed using transmission electron microscopy. Changes in cell viability with the autophagy inhibitor 3-MA were assessed by the XTT method.It was revealed that PAA alone is effective on C. tropicalis, C. parapsilosis sensu stricto, C. orthopsilosis, and C. metapsilosis (MIC 8-128 µg/mL). Strong synergism against FLC-resistant C. tropicalis was observed (FICI 0.07-0.281), when PAA and FLC were combined. PAA had dose-dependently detrimental effects on C. tropicalis cell membranes. Moreover, increased vacuoles and autophagosome formation were found in C. tropicalis exposed to PAA. And the inhibitory effect of PAA against C. tropicalis can be relieved by autophagy inhibitor 3-MA in a certain concentration range. Ultrastructural alterations of C. tropicalis were more pronounced under the combination of PAA and FLC, including separation of the cell membrane from the cell wall, increased number of vacuoles, and degradation of organelles.These observations indicated that PAA and its combination with FLC could be a promising therapeutic candidate for treating infections caused by NAC species.
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