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两亲性氨基糖苷类药物作为药物。

Amphiphilic Aminoglycosides as Medicinal Agents.

机构信息

Molecular Pharmacochemistry Department, University Grenoble Alpes, CNRS, 470 Rue de la Chimie, F-38000 Grenoble, France.

Cellular and Molecular Pharmacology Unit, Louvain Drug Research Institute, Catholic University of Louvain, Avenue E. Mounier 73, UCL B1.73.05, 1200 Brussels, Belgium.

出版信息

Int J Mol Sci. 2020 Oct 8;21(19):7411. doi: 10.3390/ijms21197411.

Abstract

The conjugation of hydrophobic group(s) to the polycationic hydrophilic core of the antibiotic drugs aminoglycosides (AGs), targeting ribosomal RNA, has led to the development of amphiphilic aminoglycosides (AAGs). These drugs exhibit numerous biological effects, including good antibacterial effects against susceptible and multidrug-resistant bacteria due to the targeting of bacterial membranes. In the first part of this review, we summarize our work in identifying and developing broad-spectrum antibacterial AAGs that constitute a new class of antibiotic agents acting on bacterial membranes. The target-shift strongly improves antibiotic activity against bacterial strains that are resistant to the parent AG drugs and to antibiotic drugs of other classes, and renders the emergence of resistant strains highly difficult. Structure-activity and structure-eukaryotic cytotoxicity relationships, specificity and barriers that need to be crossed in their development as antibacterial agents are delineated, with a focus on their targets in membranes, lipopolysaccharides (LPS) and cardiolipin (CL), and the corresponding mode of action against Gram-negative bacteria. At the end of the first part, we summarize the other recent advances in the field of antibacterial AAGs, mainly published since 2016, with an emphasis on the emerging AAGs which are made of an AG core conjugated to an adjuvant or an antibiotic drug of another class (antibiotic hybrids). In the second part, we briefly illustrate other biological and biochemical effects of AAGs, i.e., their antifungal activity, their use as delivery vehicles of nucleic acids, of short peptide (polyamide) nucleic acids (PNAs) and of drugs, as well as their ability to cleave DNA at abasic sites and to inhibit the functioning of connexin hemichannels. Finally, we discuss some aspects of structure-activity relationships in order to explain and improve the target selectivity of AAGs.

摘要

将疏水性基团(多个)与抗生素药物氨基糖苷类(AGs)的阳离子亲水性核心缀合,从而产生了两亲性氨基糖苷类(AAGs)。这些药物具有许多生物学效应,包括由于靶向细菌膜而对敏感和多药耐药细菌具有良好的抗菌作用。在这篇综述的第一部分中,我们总结了我们在鉴定和开发广谱抗菌 AAGs 方面的工作,这些药物构成了一类作用于细菌膜的新型抗生素药物。靶标转移强烈提高了对抗生素药物耐药和其他类别抗生素药物耐药的细菌菌株的抗生素活性,并使耐药菌株的出现变得非常困难。我们描述了结构-活性和结构-真核细胞毒性关系、特异性以及作为抗菌剂开发所需要克服的障碍,重点是它们在膜、脂多糖(LPS)和心磷脂(CL)中的靶标,以及针对革兰氏阴性菌的相应作用机制。在第一部分的结尾,我们总结了自 2016 年以来抗菌 AAG 领域的其他最新进展,重点介绍了新兴的 AAGs,它们由与佐剂或另一类抗生素药物(抗生素杂合体)缀合的 AG 核心组成。在第二部分,我们简要说明了 AAGs 的其他生物学和生化效应,即它们的抗真菌活性、作为核酸、短肽(聚酰胺)核酸(PNAs)和药物的递药载体的用途,以及它们在无碱基位点切割 DNA 和抑制连接蛋白半通道功能的能力。最后,我们讨论了一些结构-活性关系的方面,以解释和提高 AAGs 的靶标选择性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4c75/7583001/a3b252889151/ijms-21-07411-g001.jpg

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