抗生素治疗可调节大肠杆菌衍生的细菌细胞外囊泡(BEV)的产生及其上调人内皮细胞ICAM-1的能力。

Louis P Widom, Panteha Torabian, Abigail C Wojehowski, Sina Ghaemmaghami, Lea V Michel, Thomas R Gaborski
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引用次数: 0

摘要

为了消除危及生命的细菌感染,抗生素治疗通常是必要的。然而,这些治疗可能导致细菌细胞外囊泡(BEVs)的产生改变,BEVs通常含有可以促进炎症的生物分子。在这项研究中,我们研究了临床相关的抗生素美罗培南、托布霉素和环丙沙星如何影响尿路感染相关大肠杆菌菌株(CFT073 [WAM2267])和脑膜炎相关菌株(K1 RS218)的BEV产生。我们发现,这两种菌株的bev引起人脐静脉内皮细胞细胞间粘附分子-1表达的剂量依赖性增加,启动内皮与免疫细胞的相互作用。通过阻断toll样受体4 (TLR4),我们证明了该受体负责bev -内皮相互作用。用β-内酰胺类抗生素美罗培南处理后,菌株K1 RS218的bev产量增加。此外,美罗培南处理导致菌株CFT073 [WAM2267]产生的bev具有更高的促炎能力,可能是通过质谱法测量这些bev中脂蛋白Lpp的含量增加。这些结果可能会告知临床医生使用某些抗生素治疗特定大肠杆菌菌株的风险,也表明TLR4是减少感染期间bev介导的内皮炎症的潜在治疗靶点。作者总结:抗生素治疗对于解决细菌感染至关重要,但其对细菌细胞外囊泡(BEV)产生和下游宿主反应的影响尚不清楚。我们研究了三种常见抗生素如何影响两株与尿路感染和脑膜炎相关的大肠杆菌的BEV释放和炎症信号。我们发现这两种菌株的bev通过toll样受体4激活人内皮细胞,并且这种反应可以通过抗生素的使用来调节。特别是,美罗培南以菌株依赖的方式改变了BEV的产生和促炎潜能。蛋白质组学分析显示,抗生素暴露改变了BEV蛋白含量,包括免疫原性脂蛋白Lpp的水平。这些结果表明,抗生素的选择可以影响细菌通过囊泡以菌株依赖的方式向宿主发出信号。了解抗生素如何重塑囊泡介导的通讯可能为败血症和内皮功能障碍提供新的见解。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Antibiotic treatment modulates Escherichia coli -derived bacterial extracellular vesicle (BEV) production and their capacity to upregulate ICAM-1 in human endothelial cells.

Antibiotic treatment is often necessary to eliminate life-threatening bacterial infections. However, these treatments can alter production of bacterial extracellular vesicles (BEVs), which often contain pro-inflammatory biomolecules. In this study, we examined how the clinically-relevant antibiotics meropenem, tobramycin, and ciprofloxacin impacted BEV production from a urinary tract infection-associated Escherichia coli strain (CFT073 [WAM2267]) and a meningitis-associated strain (K1 RS218). BEVs from both strains caused a dose-dependent increase in expression of intercellular adhesion molecule-1 (ICAM-1) in human umbilical vein endothelial cells, priming the endothelium for interactions with immune cells. Blockade of toll-like receptor 4 revealed that this receptor was responsible for BEV-endothelial interactions. Treatment with meropenem, a β-lactam antibiotic, increased production of BEVs from strain K1 RS218. Furthermore, meropenem treatment caused strain CFT073 [WAM2267] to produce BEVs with heightened stimulatory capacity, possibly by amplifying the content of lipoprotein Lpp in these BEVs as measured by mass spectrometry. To our knowledge, this is the first study examining the interplay between antibiotic treatment and the effects of the resulting BEVs on endothelial ICAM-1 expression. Our results indicate treatment risks of certain antibiotics against specific strains of E. coli and could help identify therapeutic targets to reduce BEV-mediated endothelial stimulation during infection.

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