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新型合成化合物对从慢性鼻窦炎患者中分离出的致病细菌的抗菌、抗生物膜和抗群体感应潜力

Antibacterial, Antibiofilm, and Anti-Quorum Sensing Potential of Novel Synthetic Compounds Against Pathogenic Bacteria Isolated From Chronic Sinusitis Patients.

作者信息

Rafiq Muhammad Asif, Shahid Muhammad, Jilani Kashif, Aslam Muhammad Aamir

机构信息

Department of Biochemistry, University of Agriculture, Faisalabad, Pakistan.

Institute of Microbiology, University of Agriculture, Faisalabad, Pakistan.

出版信息

Dose Response. 2022 Oct 21;20(4):15593258221135731. doi: 10.1177/15593258221135731. eCollection 2022 Oct-Dec.

Abstract

Quorum sensing (QS) is a major controller of virulence and biofilm formation in pathogenic bacteria. The aim of the research was to screen novel synthetic compounds (18) from 2 series (Pyrazole and Diene dione) for quorum sensing and biofilm inhibitory potential against resistant pathogens isolated from patients with chronic sinusitis. Most of the compounds have documented zone of inhibition against Gram positive strains , and moderate activity against Gram negative and in comparison with standard antibiotic. Compounds Q1 and Q7 have given the maximum zone of inhibition 18 and 20 mm with MICs 0.312 mg/mL and .156 mg/mL against and respectively. Some compounds were equally potent at inhibiting the formation of biofilm which later established by phase contrast microscopy. Regarding quorum sensing inhibition, the tested concentration of synthetic compound UA3 0.313 mg/mL inhibited violacein production without decreasing count which was significantly lower than determined MIC's. It was depicted from the results that selected compounds exhibited low level of cytotoxicity toward human red blood cells. Hence, these findings revealed that most novel compounds were effective antibacterial, whereas compound UA3 has shared significant anti-quorum sensing potential against

摘要

群体感应(QS)是病原菌毒力和生物膜形成的主要调控机制。本研究旨在从2个系列(吡唑和二烯二酮)中筛选18种新型合成化合物,以检测其对从慢性鼻窦炎患者中分离出的耐药病原菌的群体感应和生物膜抑制潜力。大多数化合物对革兰氏阳性菌株有抑菌圈记录,对革兰氏阴性菌有中等活性,且与标准抗生素相比活性较弱。化合物Q1和Q7对[具体菌株1]和[具体菌株2]的抑菌圈最大,分别为18毫米和20毫米,最低抑菌浓度(MIC)分别为0.312毫克/毫升和0.156毫克/毫升。通过相差显微镜观察发现,一些化合物在抑制生物膜形成方面同样有效。关于群体感应抑制,合成化合物UA3在0.313毫克/毫升的测试浓度下抑制了紫色杆菌素的产生,且不降低[细菌名称]数量,这一浓度显著低于测定的最低抑菌浓度。结果表明,所选化合物对人红细胞的细胞毒性较低。因此,这些发现表明,大多数新型化合物具有有效的抗菌作用,而化合物UA3对[具体细菌名称]具有显著的群体感应抑制潜力 。 (注:原文中部分信息缺失,如“and in comparison with standard antibiotic”中第二个“and”后缺少内容;“MICs 0.312 mg/mL and.156 mg/mL against and respectively”中两个“and”后均缺少具体菌株名称;“without decreasing count”中缺少细菌名称;“against”后缺少具体细菌名称,翻译时根据语境进行了合理推测补充。)

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2643/9597054/1f9a0fc0f9ce/10.1177_15593258221135731-fig1.jpg

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