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Effects of Lipopolysaccharide and Mannheimia haemolytica Leukotoxin on Bovine Lung Microvascular Endothelial Cells and Alveolar Epithelial Cells

机译:脂多糖和溶血曼纽海姆白细胞毒素对牛肺微血管内皮细胞和肺泡上皮细胞的影响

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摘要

Bovine respiratory disease resulting from infection with Mannheimia haemolytica commonly results in extensive vascular leakage into the alveoli. M. haemolytica produces two substances, lipopolysaccharide (LPS) and leukotoxin (LKT), that are known to be important in inducing some of the pathological changes. In the present study, we examined bovine pulmonary epithelial (BPE) cell and bovine lung microvascular endothelial cell monolayer permeability, as measured by trans-well endothelial and epithelial cell electrical resistance (TEER), after incubation with LPS, LKT, or LPS-activated neutrophils. Endothelial cell monolayers exposed to LPS exhibited significant decreases in TEER that corresponded with increased levels of proinflammatory cytokines, apoptosis, and morphological changes. In contrast, BPE cells exposed to LPS increased the levels of production of inflammatory cytokines but displayed no changes in TEER, apoptosis, or visible morphological changes. Both cell types appeared to express relatively equal levels of the LPS ligand Toll-like receptor 4. However, TEER in BPE cell monolayers was decreased when the cells were incubated with LPS-activated neutrophils. Although the incubation of BPE cells with LKT decreased TEER, this was not reduced by the incubation of LKT with a neutralizing antibody and was reversed when LKT was preincubated with the LPS-neutralizing compound polymyxin B. Because BPE cells did not express the LKT receptor CD11a/CD18, we infer that contaminating LPS was responsible for the decreased TEER. In conclusion, LPS triggered changes in endothelial cells that would be consistent with vascular leakage, but neither LPS nor LKT caused similar changes in epithelial cells, unless neutrophils were also present.
机译:由溶血性曼海姆氏菌感染引起的牛呼吸道疾病通常会导致大量血管渗入肺泡。溶血支原体产生两种物质,脂多糖(LPS)和白细胞毒素(LKT),已知这两种物质在诱发某些病理变化中很重要。在本研究中,我们检查了与LPS,LKT或LPS激活孵育后的跨孔内皮和上皮细胞电阻(TEER)所测量的牛肺上皮(BPE)细胞和牛肺微血管内皮细胞单层通透性中性粒细胞。暴露于LPS的内皮细胞单层表现出TEER的显着降低,这与促炎性细胞因子,凋亡和形态变化的水平升高相对应。相反,暴露于LPS的BPE细胞增加了炎症细胞因子的产生水平,但未显示TEER,细胞凋亡或可见的形态学变化。两种细胞类型似乎都表达相对相等水平的LPS配体Toll样受体4。但是,当将细胞与LPS激活的嗜中性粒细胞孵育时,BPE细胞单层的TEER降低。尽管BPE细胞与LKT的孵育降低了TEER,但不会因LKT与中和抗体的孵育而降低,并且在LKT与LPS中和的化合物多粘菌素B预先孵育时会逆转。因为BPE细胞不表达LKT受体CD11a / CD18,我们推断污染LPS是造成TEER降低的原因。总之,LPS触发了与血管渗漏一致的内皮细胞变化,但是除非存在嗜中性粒细胞,否则LPS和LKT均不会引起上皮细胞发生类似变化。

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