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细菌脂多糖对骨髓源性小鼠巨噬细胞吞噬作用的刺激:与生化和功能参数的相关性。

Stimulation of phagocytosis in bone marrow-derived mouse macrophages by bacterial lipopolysaccharide: correlation with biochemical and functional parameters.

作者信息

Cooper P H, Mayer P, Baggiolini M

出版信息

J Immunol. 1984 Aug;133(2):913-22.

PMID:6736651
Abstract

It has been shown that low concentrations of E. coli lipopolysaccharides (LPS) greatly and selectively stimulate phagocytosis and related functions in mouse bone marrow-derived macrophages. Culture in the presence of 50 ng/ml LPS induced on average a 10-fold enhancement of phagocytosis of IgG-coated sheep erythrocytes. Activation was in two stages--a small increase observed during the first 8 to 12 hr, and the major increase noted between 16 and 24 hr. Phagocytic activity remained at the maximal level for 24 hr and then declined progressively. Stimulation by LPS was dose-dependent; significant effects could be observed at 0.8 ng/ml and the maximum was reached at 10 ng/ml. LPS-treated cells also showed a markedly increased tendency to form colonies. All these effects could be prevented by the addition of 100 ng/ml polymyxin B together with LPS, indicating that the active principle is lipid A. The LPS-dependent increase in phagocytic activity is probably mediated by increased Fc receptor capacity because both parameters were influenced in parallel by the stimulus. Phagocytosis-related events, such as enhanced hexose monophosphate shunt activity, H2O2 formation, and nitroblue tetrazolium reduction were also stimulated by LPS. By contrast, pinocytosis was unaffected. Measurements of cell-associated enzyme activities showed that lactate dehydrogenase, acid phosphatase, and cathepsin D were significantly increased. Beta-glucuronidase, beta-galactosidase, alkaline phosphodiesterase, and aminopeptidase were unchanged and NAD nucleosidase was markedly decreased after LPS treatment. 5'-Nucleotidase and glucosamine uptake were undetectable both in control and LPS-stimulated cells. LPS treatment induced a significant increase in cell-associated protein, but did not result in cell proliferation or increased cell loss as shown by the DNA content that remained constant. LPS-induced changes were dependent on de novo protein synthesis; cycloheximide prevented enhancement of phagocytosis, Fc receptor capacity, and colony formation.

摘要

已表明低浓度的大肠杆菌脂多糖(LPS)能极大且选择性地刺激小鼠骨髓来源巨噬细胞的吞噬作用及相关功能。在50 ng/ml LPS存在下培养,平均可使IgG包被的绵羊红细胞吞噬作用增强10倍。激活分两个阶段——在最初8至12小时观察到小幅增加,而主要增加在16至24小时之间。吞噬活性在24小时内保持在最高水平,然后逐渐下降。LPS的刺激呈剂量依赖性;在0.8 ng/ml时可观察到显著效果,在10 ng/ml时达到最大值。LPS处理的细胞形成集落的倾向也明显增加。所有这些效应可通过加入100 ng/ml多粘菌素B和LPS来阻止,表明活性成分是脂多糖A。LPS依赖性的吞噬活性增加可能是由Fc受体能力增强介导的,因为这两个参数受刺激的影响是平行的。吞噬作用相关事件,如增强的磷酸己糖旁路活性、H2O2形成和硝基蓝四氮唑还原也受到LPS的刺激。相比之下,胞饮作用未受影响。细胞相关酶活性的测量表明,乳酸脱氢酶、酸性磷酸酶和组织蛋白酶D显著增加。LPS处理后,β-葡萄糖醛酸酶、β-半乳糖苷酶、碱性磷酸二酯酶和氨肽酶未改变,而NAD核苷酶显著降低。在对照细胞和LPS刺激的细胞中均未检测到5'-核苷酸酶和氨基葡萄糖摄取。LPS处理导致细胞相关蛋白显著增加,但如DNA含量保持恒定所示,并未导致细胞增殖或细胞损失增加。LPS诱导的变化依赖于从头合成蛋白质;放线菌酮可阻止吞噬作用、Fc受体能力和集落形成的增强。

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