Ji Xiaotian, Shi Changying, Guo Dandan, Yang Xiguang, Suo Liye, Luo Juntao
Department of Pharmacology, State University of New York Upstate Medical University, Syracuse, New York 13210, United States.
Department of Pathology, State University of New York Upstate Medical University, Syracuse, New York 13210, United States.
Mol Pharm. 2023 Apr 3;20(4):2138-2149. doi: 10.1021/acs.molpharmaceut.2c01087. Epub 2023 Mar 6.
Systemic fungal infections are an increasingly prevalent health problem. Amphotericin B (AmB), a hydrophobic polyene antibiotic, remains the drug of choice for life-threatening invasive fungal infections. However, it has dose-limiting side effects, including nephrotoxicity. The efficacy and toxicity of AmB are directly related to its aggregation state. Here, we report the preparation of a series of telodendrimer (TD) nanocarriers with the freely engineered core structures for AmB encapsulation to fine-tune AmB aggregation status. The reduced aggregation status correlates well with the optimized antifungal activity, attenuated hemolytic properties, and reduced cytotoxicity to mammalian cells. The optimized TD nanocarrier for monomeric AmB encapsulation significantly increases the therapeutic index, reduces the toxicity, and enhances antifungal effects in mouse models with infection in comparison to two common clinical formulations, , Fungizone and AmBisome.
全身性真菌感染是一个日益普遍的健康问题。两性霉素B(AmB)是一种疏水性多烯抗生素,仍然是治疗危及生命的侵袭性真菌感染的首选药物。然而,它具有剂量限制性副作用,包括肾毒性。AmB的疗效和毒性与其聚集状态直接相关。在此,我们报告了一系列具有可自由设计核心结构的端树枝状聚合物(TD)纳米载体的制备,用于包裹AmB以微调AmB的聚集状态。聚集状态的降低与优化的抗真菌活性、减弱的溶血特性以及对哺乳动物细胞的细胞毒性降低密切相关。与两种常见临床制剂Fungizone和AmBisome相比,用于包裹单体AmB的优化TD纳米载体在感染小鼠模型中显著提高了治疗指数,降低了毒性,并增强了抗真菌效果。