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首页> 外文期刊>Infection and immunity >A lipopolysaccharide (LPS)-resistant mutant isolated from a macrophagelike cell line, J774.1, exhibits an altered activated-macrophage phenotype in response to LPS.
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A lipopolysaccharide (LPS)-resistant mutant isolated from a macrophagelike cell line, J774.1, exhibits an altered activated-macrophage phenotype in response to LPS.

机译:从巨噬细胞样细胞系J774.1分离的抗脂多糖(LPS)的突变体响应LPS表现出改变的活化巨噬细胞表型。

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A bacterial lipopolysaccharide (LPS)-resistant mutant was isolated from murine macrophagelike cell line J774.1. The mutant showed selective resistance to LPS and lipid A and was almost 10(5)- to 10(6)-fold more resistant than the parent; it grew even in the presence of 1 mg of Escherichia coli O55:B5 LPS per liter, whereas the parent did not grow with less than 10 ng of LPS per milliliter. We next examined the mutant for activation of various functions of macrophages on LPS treatment. This LPS-resistant mutant secreted interleukin-1 and tumor necrosis factor almost as effectively as the parent did. The mutant cells also changed transiently from a round to a spread form; however, they became round again afterwards. The mutant cells secreted less arachidonic acid in response to LPS. These results also suggest that this LPS-resistant mutant responds to LPS and shows activation of some macrophage functions. However, this mutant did not exhibit elevation of O2- generation or H2O2 generation after LPS treatment. Also, treatment of the mutant cells with murine recombinant gamma interferon was partly able to correct the defect in O(2-)-generating activity in response to LPS, suggesting that this defect is probably due to some of the LPS signal pathways. This implies that there is some correlation between O2- metabolism in LPS-activated macrophages and decreases in cell growth and viability.
机译:从鼠巨噬细胞样细胞系J774.1。中分离出一种抗脂多糖(LPS)的抗性突变体。该突变体显示出对LPS和脂质A的选择性抗性,并且比亲本抗性高出近10(5)至10(6)倍。它甚至在每升存在1 mg大肠杆菌O55:B5 LPS的情况下仍能生长,而母体在每毫升LPS少于10 ng的情况下生长。接下来,我们检查了该突变体对LPS治疗中巨噬细胞各种功能的激活。这种耐LPS的突变体几乎与亲本一样有效地分泌白介素1和肿瘤坏死因子。突变细胞也从圆形过渡到扩散形式。但是,随后他们又变圆了。响应LPS,突变细胞分泌的花生四烯酸较少。这些结果还表明,该抗LPS的突变体对LPS有反应并显示出某些巨噬细胞功能的激活。然而,该突变体在LPS处理后没有表现出O 2生成或H 2 O 2生成的升高。同样,用鼠类重组γ干扰素治疗突变细胞部分能够纠正对LPS的O(2-)生成活性的缺陷,这表明该缺陷可能是由于某些LPS信号途径引起的。这意味着在LPS活化的巨噬细胞中O2代谢与细胞生长和生存能力降低之间存在某些相关性。

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