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吡唑衍生的超短抗菌肽模拟物,具有强大的抗生物膜活性。

Pyrazole derived ultra-short antimicrobial peptidomimetics with potent anti-biofilm activity.

机构信息

Division of Magnetic Resonance, Korea Basic Science Institute, Ochang, Chung-Buk, 363-883, Republic of Korea.

Molecular Embryology Laboratory, Department of Animal Sciences, Chungbuk National University, Chung-Buk, 361-763, Republic of Korea.

出版信息

Eur J Med Chem. 2017 Jan 5;125:551-564. doi: 10.1016/j.ejmech.2016.09.071. Epub 2016 Sep 23.

Abstract

In this study, we report on the first chemical synthesis of ultra-short pyrazole-arginine based antimicrobial peptidomimetics derived from the newly synthesized N-alkyl/aryl pyrazole amino acids. Through the systematic tuning of hydrophobicity, charge, and peptide length, we identified the shortest peptide Py11 with the most potent antimicrobial activity. Py11 displayed greater antimicrobial activity against antibiotic-resistant bacteria, including MRSA, MDRPA, and VREF, which was approximately 2-4 times higher than that of melittin. Besides its higher selectivity (therapeutic index) toward bacterial cells than LL-37, Py11 showed highly increased proteolytic stability against trypsin digestion and maintained its antimicrobial activity in the presence of physiological salts. Interestingly, Py11 exhibited higher anti-biofilm activity against MDRPA compared to LL-37. The results from fluorescence spectroscopy and transmission electron microscopy (TEM) suggested that Py11 kills bacterial cells possibly by integrity disruption damaging the cell membrane, leading to the cytosol leakage and eventual cell lysis. Furthermore, Py11 displayed significant anti-inflammatory (endotoxin-neutralizing) activity by inhibiting LPS-induced production of nitric oxide (NO) and TNF-α. Collectively, our results suggest that Py11 may serve as a model compound for the design of antimicrobial and antisepsis agents.

摘要

在这项研究中,我们报告了首例基于超短吡唑-精氨酸的抗菌肽模拟物的化学合成,该模拟物源自新合成的 N-烷基/芳基吡唑氨基酸。通过对疏水性、电荷和肽长度的系统调整,我们确定了具有最强抗菌活性的最短肽 Py11。Py11 对包括 MRSA、MDRPA 和 VREF 在内的抗生素耐药菌的抗菌活性更强,约为 melittin 的 2-4 倍。除了对细菌细胞的选择性(治疗指数)高于 LL-37 外,Py11 对胰蛋白酶消化的蛋白酶稳定性也大大提高,并在存在生理盐的情况下保持其抗菌活性。有趣的是,Py11 对 MDRPA 的抗生物膜活性高于 LL-37。荧光光谱和透射电子显微镜(TEM)的结果表明,Py11 可能通过破坏细胞膜完整性导致细胞内容物泄漏和最终细胞裂解来杀死细菌细胞。此外,Py11 通过抑制 LPS 诱导的一氧化氮(NO)和 TNF-α 的产生显示出显著的抗炎(内毒素中和)活性。总的来说,我们的结果表明,Py11 可能作为设计抗菌和防腐剂的模型化合物。

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