新型芽孢杆菌培养物对铜绿假单胞菌群体感应控制毒力因子和生物膜形成的抑制作用

S. Alasil, R. Omar, S. Ismail, M. Yusof
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引用次数: 34

摘要

群体感应(Quorum sensing, QS)是铜绿假单胞菌等革兰氏阴性菌毒力因子和生物膜形成的关键调控因子。居住在土壤中的微生物对发现具有抗qs特性的化合物具有重要的战略意义。本研究的目的是在体外和体内测试一个分类新种Paenibacillus菌株139SI的培养提取物对qs控制的毒力因子和铜绿假单胞菌生物膜形成的抑制作用。采用Paenibacillus sp.培养提取物对铜绿假单胞菌(P. aeruginosa) LasA蛋白酶、LasB弹性酶、pyoverdin生成和生物膜形成的抗qs作用,并对慢性肺部感染大鼠模型实验动物的肺细菌学、病理学、血液学特征和血清抗体反应进行治疗。结果表明,培养提取物显著降低了铜绿假单胞菌中qs控制的LasA蛋白酶、LasB弹性蛋白酶pyoverdin活性和生物膜的形成。此外,该提取物显著延长了大鼠的存活时间,促进了感染肺部生物膜感染的清除。综上所述,一种新的芽孢杆菌培养物的反群体感应作用为对抗生物膜相关感染提供了新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Inhibition of Quorum Sensing-Controlled Virulence Factors and Biofilm Formation in Pseudomonas aeruginosa by Culture Extract from Novel Bacterial Species of Paenibacillus Using a Rat Model of Chronic Lung Infection
Quorum sensing (QS) is a key regulator of virulence factors and biofilm formation in Gram-negative bacteria such as Pseudomonas aeruginosa. Microorganisms that inhabit soil are of strategic importance in the discovery of compounds with anti-QS properties. The objective of the study was to test the culture extract of a taxonomically novel species of Paenibacillus strain 139SI for its inhibitory effects on the QS-controlled virulence factors and biofilm formation of Pseudomonas aeruginosa both in vitro and in vivo. The Paenibacillus sp. culture extract was used to test its anti-QS effects on the LasA protease, LasB elastase, pyoverdin production, and biofilm formation of P. aeruginosa as well as evaluate its therapeutic effects on lung bacteriology, pathology, hematological profile, and serum antibody responses of experimental animals in a rat model of chronic lung infection. Results showed significant decrease in the activities of QS-controlled LasA protease, LasB elastase pyoverdin, and biofilm formation of P. aeruginosa caused by the culture extract. Moreover, the extract significantly prolonged the survival times of rats and facilitated the clearance of biofilm infections from infected lungs. In conclusion, the antiquorum sensing effects of culture extract from a novel species of Paenibacillus provide new insights to combat biofilm-associated infections.
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