多烯
药理学
肾毒性
抗生素
毒性
效力
抗真菌
酮康唑
医学
化学
药品
两性霉素B
体外
微生物学
生物
生物化学
内科学
作者
Anna N. Tevyashova,E. N. Bychkova,Svetlana E. Solovieva,George V. Zatonsky,Natalia E. Grammatikova,Е. П. Исакова,Elena P. Mirchink,И. Д. Трещалин,Э. Р. Переверзева,E. E. Bykov,Svetlana S. Efimova,Olga S. Ostroumova,Andrey E. Shchekotikhin
出处
期刊:ACS Infectious Diseases
[American Chemical Society]
日期:2020-06-29
卷期号:6 (8): 2029-2044
被引量:23
标识
DOI:10.1021/acsinfecdis.0c00068
摘要
Amphotericin B (AmB, 1) is the drug of choice for treating the most serious systemic fungal or protozoan infections. Nevertheless, its application is limited by low solubility in aqueous media and serious side effects such as infusion-related reactions, hemolytic toxicity, and nephrotoxicity. Owing to these limitations, it is essential to search for the polyene derivatives with better chemotherapeutic properties. With the objective of obtaining AmB derivatives with lower self-aggregation and improved solubility, we synthesized a series of amides of AmB bearing an additional basic group in the introduced residue. The screening of antifungal activity in vitro revealed that N-(2-aminoethyl)amide of AmB (amphamide, 6) had superior antifungal activity compared to that of the paternal AmB. Preclinical studies in mice confirmed that compound 6 had a much lower acute toxicity and higher antifungal efficacy in the model of mice candidosis sepsis compared with that of AmB (1). Thus, the discovered amphamide is a promising drug candidate for the second generation of polyene antibiotics and is also prospective for in-depth preclinical and clinical evaluation.
科研通智能强力驱动
Strongly Powered by AbleSci AI