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从 Phyllomedusa tomopterna 中分离得到的新型抗菌肽的体外活性。

In vitro activities of a novel antimicrobial peptide isolated from phyllomedusa tomopterna.

机构信息

Beijing University of Chinese Medicine, School of Chinese Materia Medica, Beijing, 100029, China.

Natural Drug Discovery Group, School of Pharmacy, Queen's University Belfast BT9 7BL, Northern Ireland, UK.

出版信息

Microb Pathog. 2021 Apr;153:104795. doi: 10.1016/j.micpath.2021.104795. Epub 2021 Feb 11.

Abstract

Because of the abuse of antibiotics, clinical strains began to become more drug-resistant. Their evolution has long surpassed the speed of us looking for a new generation of antibacterial drugs. Therefore, it is urgent to discover a new antimicrobial substance to alleviate the pressure on conventional antibiotics. Antimicrobial peptides (AMP) are known for their significant activity towards a broad spectrum of bacteria, protozoa, yeasts, filamentous fungi. Here, we report a novel AMP named Dermaseptin-TO. Results demonstrate that Dermaseptin-TO can quickly exhibit antimicrobial activity to bacteria and yeast in a dose-related way. The highest minimum inhibit concentration (MIC) was observed in the E.faecalis group (128 μM). Also, haemolytic outcomes showed no more than 10.65% of red blood cells were affected when in the same concentrations or below. Besides, Dermaseptin-TO also showed anticancer activity at a higher concentration. From the above, evidence proved that Phyllomedusine frog skin secretion is still a rich source that contains novel AMP and Dermaseptin-TO is competent to become an antimicrobial agent, its anticancer activity may broaden the way in basic cancer research. Also, following the same templates in molecular cloning may acquire new AMP classes with potent antimicrobial effects that could widen drug design in new anti-infective drugs.

摘要

由于抗生素的滥用,临床菌株开始变得更具耐药性。它们的进化速度早已超过了我们寻找新一代抗菌药物的速度。因此,迫切需要发现一种新的抗菌物质来缓解对传统抗生素的压力。抗菌肽(AMP)以其对广谱细菌、原生动物、酵母、丝状真菌的显著活性而闻名。在这里,我们报告了一种名为 Dermaseptin-TO 的新型 AMP。结果表明,Dermaseptin-TO 可以快速表现出抗菌活性,且呈剂量依赖性。在 E. faecalis 组中观察到最高的最小抑制浓度(MIC)为 128 μM。同样,当处于相同浓度或以下时,溶血结果显示不超过 10.65%的红细胞受到影响。此外,Dermaseptin-TO 在更高浓度下也表现出抗癌活性。综上所述,有证据表明,树蛙皮肤分泌物仍然是一种富含新型 AMP 的丰富来源,而 Dermaseptin-TO 有潜力成为一种抗菌剂,其抗癌活性可能会拓宽基础癌症研究的途径。此外,通过分子克隆遵循相同的模板可能会获得具有强大抗菌效果的新型 AMP 类,从而拓宽新抗感染药物的药物设计。

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