Department of Medicinal Chemistry, National Institute of Pharmaceutical Education and Research, Sahibzada Ajit Singh Nagar, Punjab, India.
Center of Infectious Diseases, National Institute of Pharmaceutical Education and Research, Sahibzada Ajit Singh Nagar, Punjab, India.
Drug Dev Res. 2023 May;84(3):514-526. doi: 10.1002/ddr.22041. Epub 2023 Feb 9.
Availability of a limited number of antifungal drugs created a necessity to develop new antifungals with distinct mode of action. Investigation on a new series of peptides led us to identify Boc-His-Trp-His[1-(4-tert-butylphenyl)] (10g) as the most promising inhibitor exhibiting IC value of 4.4 µg/mL against Cryptococcus neoformans. Analog 10g exhibit high selectivity to fungal cells and was nonhemolytic and noncytotoxic at its minimum inhibitory concentration. 10g produced fungicidal effect on growing cryptococcal cells and displayed synergistic effect with amphotericin B. Overall cationic character of 10g resulted in interaction with negatively charged fungal membrane while hydrophobicity enhanced penetration inside the cryptococcal cells causing hole(s) formation and disruption to the membrane as evident by the scanning electron microscopy, transmission electron microscopy, and confocal laser scanning microscopy analyses. Flow cytometric investigation revealed rapid death of fungal cells by apopotic pathway.
数量有限的抗真菌药物的出现,使得开发具有独特作用模式的新型抗真菌药物成为必要。对一系列新肽的研究使我们发现 Boc-His-Trp-His[1-(4-叔丁基苯基)](10g)是最有前途的抑制剂,对新型隐球菌的 IC 值为 4.4μg/mL。类似物 10g 对真菌细胞具有高选择性,在其最低抑菌浓度下既不溶血也不细胞毒性。10g 对生长中的隐球菌细胞产生杀菌作用,并与两性霉素 B 表现出协同作用。10g 的整体正电荷特性导致与带负电荷的真菌膜相互作用,而疏水性增强了其在隐球菌细胞内的渗透,导致孔(s)的形成和膜的破坏,这可以通过扫描电子显微镜、透射电子显微镜和共聚焦激光扫描显微镜分析得到证实。流式细胞术研究表明,真菌细胞通过凋亡途径迅速死亡。