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一种纳米技术操控的新型吡唑的强效广谱杀菌活性

Potent and Broad-Spectrum Bactericidal Activity of a Nanotechnologically Manipulated Novel Pyrazole.

作者信息

Alfei Silvana, Caviglia Debora, Zorzoli Alessia, Marimpietri Danilo, Spallarossa Andrea, Lusardi Matteo, Zuccari Guendalina, Schito Anna Maria

机构信息

Department of Pharmacy (DIFAR), University of Genoa, Viale Cembrano, 16148 Genoa, Italy.

Department of Surgical Sciences and Integrated Diagnostics (DISC), University of Genoa, Viale Benedetto XV, 6, 16132 Genoa, Italy.

出版信息

Biomedicines. 2022 Apr 15;10(4):907. doi: 10.3390/biomedicines10040907.

Abstract

The antimicrobial potency of the pyrazole nucleus is widely reported these days, and pyrazole derivatives represent excellent candidates for meeting the worldwide need for new antimicrobial compounds against multidrug-resistant (MDR) bacteria. Consequently, 3-(4-chlorophenyl)-5-(4-nitrophenylamino)-1H-pyrazole-4-carbonitrile (CR232), recently reported as a weak antiproliferative agent, was considered to this end. To overcome the CR232 water solubility issue and allow for the determination of reliable minimum inhibitory concentration values (MICs), we initially prepared water-soluble and clinically applicable CR232-loaded nanoparticles (CR232-G5K NPs), as previously reported. Here, CR232-G5K NPs have been tested on several clinically isolates of Gram-positive and Gram-negative species, including MDR strains. While for CR232 MICs ≥ 128 µg/mL (376.8 µM) were obtained, very low MICs (0.36-2.89 µM) were observed for CR232-G5K NPs against all of the considered isolates, including colistin-resistant isolates of MDR and carbapenemases (KPCs)-producing (0.72 µM). Additionally, in time-kill experiments, CR232-G5K NPs displayed a rapid bactericidal activity with no significant regrowth after 24 h on all isolates tested, regardless of their difficult-to-treat resistance. Conjecturing a clinical use of CR232-G5K NPs, cytotoxicity experiments on human keratinocytes were performed, determining very favorable selectivity indices. Collectively, due to its physicochemical and biological properties, CR232-G5K NPs could represent a new potent weapon to treat infections sustained by broad spectrum MDR bacteria.

摘要

如今,吡唑核的抗菌效力已被广泛报道,吡唑衍生物是满足全球对抗多药耐药(MDR)细菌的新型抗菌化合物需求的优秀候选物。因此,为此考虑了最近报道的作为弱抗增殖剂的3-(4-氯苯基)-5-(4-硝基苯氨基)-1H-吡唑-4-腈(CR232)。为了克服CR232的水溶性问题并确定可靠的最低抑菌浓度值(MIC),我们最初制备了负载CR232的水溶性且临床适用的纳米颗粒(CR232-G5K NPs),如先前报道的那样。在此,CR232-G5K NPs已在几种革兰氏阳性和革兰氏阴性菌的临床分离株上进行了测试,包括MDR菌株。虽然CR232的MIC≥128 µg/mL(376.8 µM),但CR232-G5K NPs对所有考虑的分离株,包括MDR耐粘菌素分离株和产碳青霉烯酶(KPCs)的分离株(0.72 µM),观察到非常低的MIC(0.36 - 2.89 µM)。此外,在时间杀菌实验中,CR232-G5K NPs对所有测试的分离株均显示出快速杀菌活性,在24小时后没有明显的再生长,无论其耐药性难以治疗。推测CR232-G5K NPs的临床用途,对人角质形成细胞进行了细胞毒性实验,确定了非常有利的选择性指数。总体而言,由于其物理化学和生物学特性,CR232-G5K NPs可能是治疗由广谱MDR细菌引起的感染的一种新的有力武器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1e98/9029483/5d65462f65e7/biomedicines-10-00907-g001.jpg

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