首页> 外文期刊>American Journal of Physiology >Surfactant protein D enhances Pneumocystis infection in immune-suppressed mice.
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Surfactant protein D enhances Pneumocystis infection in immune-suppressed mice.

机译:表面活性蛋白D增强免疫抑制小鼠的肺孢子虫感染。

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摘要

To further determine the role of surfactant protein (SP)-D in the pathogenesis of Pneumocystis pneumonia, a mouse model of transgenic overexpression (OE) of SP-D was studied. These animals produce roughly 30- to 50-fold greater SP-D than their wild-type (WT) counterparts but show no other differences in lung morphology and function. Animals in both the SP-D OE and WT groups were depleted of CD4 lymphocytes with weekly injections of GK1.5 antibody, before Pneumocystis inoculation, and throughout the subsequent infection period. At various time points, mice were killed and analyzed for inflammatory parameters and organism burden. Proinflammatory cytokines in bronchoalveolar lavage fluid were elevated throughout the period of infection, with OE animals exhibiting significantly higher levels of TNF-alpha and macrophage inflammatory protein-2 compared with WT controls. The total number of cells in the lavage fluid was also increased significantly only in the OE group, whereas the cell differential composition demonstrated lymphocyte and eosinophil infiltration in both groups of animals. Significantly, the organism burden was markedly higher in the SP-D OE animals, whereas the WT mice demonstrated little alteration in organism number over the course of infection. These results further indicate that SP-D facilitates the development of Pneumocystis infection and related lung inflammation in an immunosuppressed mouse model.
机译:为进一步确定表面活性蛋白(SP)-D在肺孢子菌肺炎发病机制中的作用,研究了SP-D转基因过表达(OE)的小鼠模型。这些动物产生的SP-D大约是野生型(WT)对应物的30至50倍,但在肺形态和功能方面没有其他差异。在肺孢子菌接种之前,每周注射一次 GK1.5 抗体,SP-D OE 和 WT 组动物的 CD4 淋巴细胞均被耗尽。在不同的时间点,杀死小鼠并分析炎症参数和生物体负荷。在整个感染期间,支气管肺泡灌洗液中的促炎细胞因子升高,与WT对照组相比,OE动物的TNF-α和巨噬细胞炎症蛋白-2水平显着升高。仅在OE组中,灌洗液中的细胞总数也显着增加,而细胞差异组成显示两组动物的淋巴细胞和嗜酸性粒细胞浸润。值得注意的是,SP-D OE动物的病原体负荷明显更高,而WT小鼠在感染过程中病原体数量几乎没有变化。这些结果进一步表明,SP-D在免疫抑制小鼠模型中促进肺孢子菌感染和相关肺部炎症的发展。

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