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抗真菌大环内酯类抗生素两性霉素B——其现状与未来。医学实践应用的多学科视角。

Antifungal Macrocycle Antibiotic Amphotericin B-Its Present and Future. Multidisciplinary Perspective for the Use in the Medical Practice.

作者信息

Baghirova A A, Kasumov Kh M

机构信息

Institute of Botany, Azerbaijan National Academy of Sciences, Patamdartskoe shosse 40, AZ1004 Baku, Azerbaijan.

出版信息

Biochem Mosc Suppl B Biomed Chem. 2022;16(1):1-12. doi: 10.1134/S1990750822010024. Epub 2022 Feb 14.

Abstract

This review is devoted to a broad analysis of the results of studies of the effect of macrocyclic antifungal polyene antibiotic amphotericin B on cell membranes. A detailed study of polyenes has shown that some of them can have not only antifungal, but also antiviral and antitumor effects. Under conditions of global pandemic fungal pathology develops especially quickly and in this case leads to invasive aspergillosis, which contributes to the complication of coronavirus infection in the lungs and even secondary infection with invasive aspergillosis. The treatment of an invasive form of bronchopulmonary aspergillosis is directly related to the immunomodulatory and immunostimulating properties of the macrocyclic polyene drug amphotericin B. The article presents experimental data on the study of the biological activity and membrane properties of amphotericin B and the effect of its chemically modified derivatives, as well as liposomal forms of amphotericin B on viral, bacterial and fungal infections. The mechanism of action of amphotericin B and its analogues is based on their interaction with cellular and lipid membranes, followed by formation of ion channels of molecular size in the membranes. The importance of these studies is that polyenes are sensitive to membranes that contain sterols of a certain structure. The analysis showed that pathogenic fungal cells containing ergosterol were 10-100 times more sensitive to polyene antibiotics than host cell membranes containing cholesterol. The high sterol selectivity of the action of polyenes opens broad prospects for the use of polyene antifungal drugs in practical medicine and pharmacology in the treatment of invasive mycoses and the prevention of atherosclerosis. In this context, it should be noted that polyene antibiotics are the main tool in the study of the biochemical mechanism of changes in the permeability of cell membranes for energy-dependent substrates. Chemical and genetic engineering transformation of the structure of polyene antibiotic molecules opens prospects for the identification and creation of new biologically active forms of the antibiotic that have a high selectivity of action in the treatment of pathogenic infections.

摘要

本综述致力于对大环抗真菌多烯抗生素两性霉素B对细胞膜作用的研究结果进行广泛分析。对多烯类药物的详细研究表明,其中一些不仅具有抗真菌作用,还具有抗病毒和抗肿瘤作用。在全球大流行的情况下,真菌病理学发展尤其迅速,进而导致侵袭性曲霉病,这会使肺部冠状病毒感染复杂化,甚至引发侵袭性曲霉病的继发感染。侵袭性支气管肺曲霉病的治疗与大环多烯药物两性霉素B的免疫调节和免疫刺激特性直接相关。本文展示了关于两性霉素B的生物活性和膜特性及其化学修饰衍生物以及两性霉素B脂质体形式对病毒、细菌和真菌感染影响的实验数据。两性霉素B及其类似物的作用机制基于它们与细胞膜和脂质膜的相互作用,随后在膜中形成分子大小的离子通道。这些研究的重要性在于多烯类药物对含有特定结构固醇的膜敏感。分析表明,含有麦角固醇的致病真菌细胞对多烯抗生素的敏感性比含有胆固醇的宿主细胞膜高10至100倍。多烯类药物作用的高固醇选择性为多烯抗真菌药物在实际医学和药理学中用于治疗侵袭性真菌病及预防动脉粥样硬化开辟了广阔前景。在此背景下,应注意多烯抗生素是研究细胞膜对能量依赖底物通透性变化生化机制的主要工具。多烯抗生素分子结构的化学和基因工程改造为鉴定和创造在治疗致病性感染中具有高作用选择性的新型生物活性抗生素形式开辟了前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d87f/8853366/d370542a0802/11828_2022_5129_Fig1_HTML.jpg

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