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首页> 外文期刊>American Journal of Physiology >Lipopolysaccharide modulates neutrophil recruitment and macrophage polarization on lymphatic vessels and impairs lymphatic function in rat mesentery
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Lipopolysaccharide modulates neutrophil recruitment and macrophage polarization on lymphatic vessels and impairs lymphatic function in rat mesentery

机译:脂多糖调节淋巴血管上的中性粒细胞募集和巨噬细胞极化,损害大鼠肠系中的淋巴功能

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Impairment of the lymphatic system is apparent in multiple inflammatory pathologies connected to elevated endotoxins such as LPS. However, the direct mechanisms by which LPS influences the lymphatic contractility are not well understood. We hypothesized that a dynamic modulation of innate immune cell populations in mesentery under inflammatory conditions perturbs tissue cytokine/ chemokine homeostasis and subsequently influences lymphatic function. We used rats that were intraperitoneally injected with LPS (10 mg/kg) to determine the changes in the profiles of innate immune cells in the mesentery and in the stretch-mediated contractile responses of isolated lymphatic preparations. Results demonstrated a reduction in the phasic contractile activity of mesen-teric lymphatic vessels from LPS-injected rats and a severe impairment of lymphatic pump function and flow. There was a significant reduction in the number of neutrophils and an increase in monocytes/macrophages present on the lymphatic vessels and in the clear mesentery of the LPS group. This population of mono-cytes and macrophages established a robust M2 phenotype, with the majority showing high expression of CD163 and CD206. Several cytokines and chemoattractants for neutrophils and macrophages were significantly changed in the mesentery of LPS-injected rats. Treatment of lymphatic muscle cells (LMCs) with LPS showed significant changes in the expression of adhesion molecules, VCAM1, ICAM1, CXCR2, and galectin-9. LPS-TLR4-mediated regulation of pAKT, pERK pI-kappaB, and pMLC_(20) in LMCs promoted both contractile and inflammatory pathways. Thus, our data provide the first evidence connecting the dynamic changes in innate immune cells on or near the lymphatics and complex cytokine milieu during inflammation with lymphatic dysfunction.
机译:淋巴系统的损伤在多种炎症病理中显而易见,其连接到升高的内毒素如LPS。然而,LPS影响淋巴结性的直接机制尚不清楚。我们假设炎症条件下肠系膜内先生免疫细胞群的动态调制扰乱组织细胞因子/趋化因子稳态,随后影响淋巴功能。我们使用腹膜内注射LPS(10mg / kg)的大鼠来确定肠系膜内先天免疫细胞和介导的淋巴化合物的拉伸介导的收缩反应中的先天免疫细胞曲线的变化。结果表明,来自LPS注入的大鼠的Mesen-Teric淋巴管阶段的相序接收活性和淋巴泵功能的严重损害。中性粒细胞的数量和淋巴血管上存在的单核细胞/巨噬细胞的增加以及LPS组的透明肠系膜中存在显着降低。这种单细胞和巨噬细胞的群体建立了一种稳健的M2表型,其中大多数显示CD163和CD206的高表达。 LPS注射大鼠的肠系膜中,几种细胞因子和巨噬细胞的细胞因子和巨噬细胞显着改变。用LPS处理淋巴肌细胞(LMC)显示出粘附分子,VCAM1,ICAM1,CXCR2和GALECTIN-9表达的显着变化。 LPS-TLR4介导的PAKT,PI-Kappab和LMC中PMLC_(20)的调节促进了收缩和炎症途径。因此,我们的数据提供了在淋巴细胞功能障碍炎症期间淋巴瘤和复杂细胞因子Milieu上的先天免疫细胞和复杂的细胞因子Milieu内连接有动态变化的第一种证据。

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