Suppr超能文献

通过位置异构调节活性和毒性的异两亲性抗菌分子。

Isoamphipathic antibacterial molecules regulating activity and toxicity through positional isomerism.

作者信息

Barman Swagatam, Mukherjee Sudip, Jolly Logia, Troiano Cassandra, Grottesi Alessandro, Basak Debajyoti, Calligari Paolo, Bhattacharjee Brinta, Bocchinfuso Gianfranco, Stella Lorenzo, Haldar Jayanta

机构信息

Antibacterial Research Laboratory, New Chemistry Unit, Jawaharlal Nehru Centre for Advanced Scientific Research (JNCASR) Jakkur Bangalore 560064 India

Department of Chemical Science and Technologies, University of Rome Tor Vergata via della Ricerca Scientifica, 1 00133 Rome Italy.

出版信息

Chem Sci. 2023 Apr 6;14(18):4845-4856. doi: 10.1039/d2sc06065e. eCollection 2023 May 10.

Abstract

Peptidomimetic antimicrobials exhibit a selective interaction with bacterial cells over mammalian cells once they have achieved an optimum amphiphilic balance (hydrophobicity/hydrophilicity) in the molecular architecture. To date, hydrophobicity and cationic charge have been considered the crucial parameters to attain such amphiphilic balance. However, optimization of these properties is not enough to circumvent unwanted toxicity towards mammalian cells. Hence, herein, we report new isoamphipathic antibacterial molecules (IAMs: ) where positional isomerism was introduced as one of the guiding factors for molecular design. This class of molecules displayed good (MIC = 1-8 μg mL or μM) to moderate [MIC = 32-64 μg mL (32.2-64.4 μM)] antibacterial activity against multiple Gram-positive and Gram-negative bacteria. Positional isomerism showed a strong influence on regulating antibacterial activity and toxicity for [IAM-1: MIC = 1-32 μg mL (1-32.2 μM), HC = 650 μg mL (654.6 μM)], [IAM-2: MIC = 1-16 μg mL (1-16.1 μM), HC = 98 μg mL (98.7 μM)] and [IAM-3: MIC = 1-16 μg mL (1-16.1 μM), HC = 160 μg mL (161.1 μM)] isomers. Co-culture studies and investigation of membrane dynamics indicated that isomer, IAM-1 exerted more selective activity towards bacterial over mammalian membranes, compared to and isomers. Furthermore, the mechanism of action of the lead molecule (IAM-1) has been characterized through detailed molecular dynamics simulations. In addition, the lead molecule displayed substantial efficacy against dormant bacteria and mature biofilms, unlike conventional antibiotics. Importantly, IAM-1 exhibited moderate activity against MRSA wound infection in a murine model with no detectable dermal toxicity. Altogether, the report explored the design and development of isoamphipathic antibacterial molecules to establish the role of positional isomerism in achieving selective and potential antibacterial agents.

摘要

一旦肽模拟抗菌剂在分子结构中达到最佳的两亲平衡(疏水性/亲水性),它们就会与细菌细胞而非哺乳动物细胞表现出选择性相互作用。迄今为止,疏水性和阳离子电荷一直被认为是实现这种两亲平衡的关键参数。然而,仅优化这些性质不足以避免对哺乳动物细胞产生不必要的毒性。因此,在此我们报道了新的异两亲抗菌分子(IAMs: ),其中位置异构被引入作为分子设计的指导因素之一。这类分子对多种革兰氏阳性和革兰氏阴性细菌表现出良好(MIC = 1 - 8 μg/mL或μM)至中等[MIC = 32 - 64 μg/mL(32.2 - 64.4 μM)]的抗菌活性。位置异构对[IAM - 1:MIC = 1 - 32 μg/mL(1 - 32.2 μM),HC = 650 μg/mL(654.6 μM)]、[IAM - 2:MIC = 1 - 16 μg/mL(1 - 16.1 μM),HC = 98 μg/mL(98.7 μM)]和[IAM - 3:MIC = 1 - 16 μg/mL(1 - 16.1 μM),HC = 160 μg/mL(161.1 μM)]异构体的抗菌活性和毒性调节有很大影响。共培养研究和膜动力学研究表明,与 和 异构体相比,IAM - 1异构体对细菌膜比对哺乳动物膜具有更高的选择性活性。此外,先导分子(IAM - 1)的作用机制已通过详细的分子动力学模拟进行了表征。此外,与传统抗生素不同,先导分子对休眠细菌和成熟生物膜具有显著疗效。重要的是,IAM - 1在小鼠模型中对耐甲氧西林金黄色葡萄球菌伤口感染表现出中等活性,且未检测到皮肤毒性。总之,该报告探索了异两亲抗菌分子的设计和开发,以确定位置异构在实现选择性和潜在抗菌剂方面的作用。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验