几丁质衍生小分子AVR-48重编程静息巨噬细胞至中间表型并减少铜绿假单胞菌小鼠肺部感染

S. Behera, S. Panda, M. Donkor, Eesha Acharya, H. Jones, S. Acharya
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引用次数: 0

摘要

AVR-48是我们实验室先前证明的甲壳素的结构衍生物,可以显著降低LPS,高氧和败血症诱导的啮齿动物模型的肺损伤参数。目前的研究目的是确定作用的细胞机制,并在小鼠细菌性肺部感染模型中证明其功效。在体外受体结合和巨噬细胞极化研究中,采用AVR-48±LPS或生物素偶联AVR-48处理C57Bl/6J小鼠脾脏和人外周血单个核细胞(hPBMCs)。流式细胞术检测巨噬细胞类型,ELISA检测细胞因子分泌。在体内,用AVR-48治疗CD-1小鼠铜绿假单胞菌肺部感染,评估肺和血液样本中细菌集落形成单位(CFU)、IL-10和IL-17A水平。AVR-48在小鼠单核细胞上结合toll样受体4 (TLR4)和CD163受体。在hPBMCs中,AVR-48处理72小时后,中间巨噬细胞的频率增加。在THP-1细胞中观察到细菌吞噬/细胞内杀伤增加,CD-1小鼠肺中CFU降低。AVR-48与TLR4和CD163受体结合使巨噬细胞进入中间阶段,导致吞噬增加和炎症减少,共同为治疗肺损伤和感染提供最佳的免疫平衡。
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Chitin Derived Small Molecule AVR-48 Reprograms the Resting Macrophages to an Intermediate Phenotype and Decrease Pseudomonas aeruginosa Mouse Lung Infection
AVR-48 is a structural derivative of chitin previously shown by our laboratory to significantly decrease lung injury parameters in LPS, hyperoxia and sepsis-induced rodent models. The current study objectives are to determine the cellular mechanism of action and demonstrate efficacy in a mouse bacterial lung infection model. For in vitro receptor binding and macrophage polarization studies, C57Bl/6J mouse derived spleens and human peripheral blood mononuclear cells (hPBMCs) were treated with AVR-48 ± LPS or biotin conjugated AVR-48. Different macrophage types were determined using flow cytometry and secreted cytokines were measured using ELISA. In vivo, a CD-1 mouse Pseudomonas aeruginosa lung infection was treated with AVR-48, assessing bacterial colony forming unit (CFU), IL-10 and IL-17A levels in lung and blood samples. AVR-48 binds to both the toll-like receptor 4 (TLR4) and the CD163 receptor on mouse monocytes. In hPBMCs, frequency of intermediate macrophages increased upon AVR-48 treatment for 72 h. Increased bacterial phagocytosis/intracellular killing were observed in THP-1 cells and reduction in CFU in CD-1 mouse lungs. Binding of AVR-48 to both TLR4 and CD163 receptors bring the macrophages to an intermediary stage, resulting in increased phagocytosis and decreased inflammation, altogether providing an optimal immune balance for treating lung injury and infection.
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Immuno-Analyse & Biologie Specialisee
Immuno-Analyse & Biologie Specialisee 医学-医学实验技术
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