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新型截短侧耳素衍生物的发现及其作为强效抗菌剂的潜力。

Discovery of novel pleuromutilin derivatives as potent antibacterial agents.

机构信息

Key Laboratory of New Animal Drug Project, Gansu Province/Key Laboratory of Veterinary Pharmaceutical Development, Ministry of Agriculture and Rural Affairs/Lanzhou Institute of Husbandry and Pharmaceutical Sciences of CAAS, Lanzhou, 730050, China.

Shandong Provincial Animal and Poultry Green Health Products Creation Engineering Laboratory, Institute of Poultry Science, Shandong Academy of Agricultural Science, 202 Gongyebeilu Jinan, 250023, Shandong, China.

出版信息

Eur J Med Chem. 2022 Jul 5;237:114403. doi: 10.1016/j.ejmech.2022.114403. Epub 2022 Apr 20.

Abstract

Novel pleuromutilin derivatives with 3,4-dihydropyrimidin and pyrimidine moieties were designed, synthesized, and evaluated for their antibacterial activities. Most of the synthesized derivatives, especially the compounds bearing the pyrimidine moieties, exhibited potent antibacterial activities against methicillin-resistant Staphylococcus aureus BNCC 337371 (MRSA-337371), Staphylococcus aureus ATCC 25923 (S. aureus-25923) and methicillin-resistant Staphylococcus epidermidis ATCC 51625 (MRSE-51625). Compounds 5a, 5g and 5h exerted the excellent antibacterial activities and selected to evaluate their bacterial killing kinetics. Compound 5h displayed the highest antibacterial activities with bacteriostatic activities against MRSA and further evaluated its efficacy in mouse systemic infection. The results showed that compound 5h exhibited potent in vivo antibacterial effects to significantly improve the survival rate of mice (ED = 16.14 mg/kg), reduce the bacterial load and alleviate the pathological changes in the lungs of the affected mice. Furthermore, molecular docking studies revealed that the selected compounds successfully localized in the pocket of 50S ribosomal subunit and the formed hydrogen bonds were the main interaction.

摘要

设计、合成了具有 3,4-二氢嘧啶和嘧啶部分的新型截短侧耳素衍生物,并评估了它们的抗菌活性。大多数合成的衍生物,特别是含有嘧啶部分的化合物,对耐甲氧西林金黄色葡萄球菌 BNCC 337371 (MRSA-337371)、金黄色葡萄球菌 ATCC 25923 (S. aureus-25923) 和耐甲氧西林表皮葡萄球菌 ATCC 51625 (MRSE-51625) 表现出很强的抗菌活性。化合物 5a、5g 和 5h 表现出优异的抗菌活性,并选择评估它们的细菌杀伤动力学。化合物 5h 显示出最高的抗菌活性,对 MRSA 具有抑菌活性,并进一步评估了其在小鼠全身感染中的疗效。结果表明,化合物 5h 具有很强的体内抗菌作用,能显著提高小鼠的存活率(ED=16.14mg/kg),降低细菌负荷并减轻受影响小鼠肺部的病理变化。此外,分子对接研究表明,所选化合物成功定位于 50S 核糖体亚基的口袋中,形成的氢键是主要的相互作用。

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