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乳铁蛋白与脂多糖(LPS)的相互作用:对乳铁蛋白抗氧化特性以及LPS引发人类中性粒细胞增强超氧化物形成能力的影响。

Interaction of lactoferrin and lipopolysaccharide (LPS): effects on the antioxidant property of lactoferrin and the ability of LPS to prime human neutrophils for enhanced superoxide formation.

作者信息

Cohen M S, Mao J, Rasmussen G T, Serody J S, Britigan B E

机构信息

Department of Internal Medicine, University of North Carolina, Chapel Hill 27599-7030.

出版信息

J Infect Dis. 1992 Dec;166(6):1375-8. doi: 10.1093/infdis/166.6.1375.

Abstract

Lactoferrin is a 77-kDa iron-binding protein to which a wide variety of divergent biologic functions have been ascribed. It has recently been reported that lactoferrin interacts with bacterial lipopolysaccharide (LPS) in such a fashion as to affect the binding of lactoferrin to myeloid cells. Two other potential interactions of LPS and lactoferrin were explored. Lactoferrin prevents hydroxyl radical formation by binding iron, even at low pH. Lactoferrin inhibited iron-catalyzed formation of hydroxyl radical in the presence of LPS at pH 7.4 and 4.5. Low concentrations of LPS can be used to "prime" neutrophils toward enhanced function, such as formation of stimulated superoxide anion. Lactoferrin inhibited LPS priming of neutrophils if LPS contamination of the protein (provided by commercial suppliers) was first reduced. Inhibition of LPS priming was observed whether apolactoferrin or iron-saturated lactoferrin was used. Similar inhibition of LPS priming was observed when neutrophils were incubated with other serum proteins (e.g., albumin, apotransferrin, or iron-saturated transferrin). These results show that LPS should not be expected to affect the free radical biology of lactoferrin, which is a crucial physiologic function of this protein. However, lactoferrin inhibits LPS priming, and this effect requires consideration in experimental models of inflammation.

摘要

乳铁蛋白是一种77 kDa的铁结合蛋白,具有多种不同的生物学功能。最近有报道称,乳铁蛋白与细菌脂多糖(LPS)相互作用,从而影响乳铁蛋白与髓样细胞的结合。我们还探讨了LPS与乳铁蛋白的另外两种潜在相互作用。乳铁蛋白通过结合铁来防止羟基自由基的形成,即使在低pH值下也是如此。在pH值为7.4和4.5时,乳铁蛋白在LPS存在的情况下抑制铁催化的羟基自由基形成。低浓度的LPS可用于“启动”中性粒细胞,使其功能增强,如形成受刺激的超氧阴离子。如果首先降低蛋白质(由商业供应商提供)中的LPS污染,乳铁蛋白会抑制中性粒细胞的LPS启动。无论使用脱铁乳铁蛋白还是铁饱和乳铁蛋白,都观察到对LPS启动的抑制作用。当中性粒细胞与其他血清蛋白(如白蛋白、脱铁转铁蛋白或铁饱和转铁蛋白)一起孵育时,也观察到了类似的对LPS启动的抑制作用。这些结果表明,不应期望LPS会影响乳铁蛋白的自由基生物学,而这是该蛋白的一项关键生理功能。然而,乳铁蛋白会抑制LPS启动,在炎症实验模型中需要考虑这种效应。

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