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Sites of tissue binding and uptake in vivo of bacterial lipopolysaccharide-high density lipoprotein complexes: studies in the rat and squirrel monkey.

机译:细菌脂多糖-高密度脂蛋白复合物在体内的组织结合和吸收位点:在大鼠和松鼠猴中的研究。

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摘要

When gram-negative bacterial lipopolysaccharides (LPS) are injected intravenously into the rabbit or rat, they bind to plasma lipoproteins, particularly high density lipoproteins (HDL). The present studies were performed to examine the mechanisms by which LPS-HDL complexes are removed from the circulation and taken up by various tissues. Our approach was to compare the sites of specific tissue binding and uptake of HDL and of LPS-HDL complexes in the rat and squirrel monkey. In the rat, binding of homologous 125I-HDL was demonstrated principally in the adrenal gland, ovary, liver, and spleen. [3H]LPS-HDL complexes (produced in vitro by incubating Salmonella typhimurium [3H]LPS with rat HDL and lipoprotein-free plasma) bound to the same tissues, but with apparently lower affinities. The specificity of binding of both 125I-HDL and [3H]LPS-HDL to these organs was demonstrated in two ways. First, tissue binding of both radiolabeled preparations was swamped out by raising the circulating levels of HDL-cholesterol from 32 to 140 mg/dl. Second, treatment of the animals with dexamethasone abolished specific binding of both HDL preparations to the adrenal gland while administration of adrenocorticotropin increased the specific adrenal binding of the two preparations. The steady-state plasma clearance rate for 125I-HDL equaled 774 +/- 29 microliters/h and was significantly lower (557 +/- 39 microliters/h) for the LPS-HDL complex, a finding that presumably reflected the lesser ability of the various tissues to bind the LPS-HDL complex. Binding studies were also done in the squirrel monkey, an animal that has the same level of circulating HDL cholesterol as the rat, but nearly three times more cholesterol in low density lipoproteins. Specific binding of homologous 125I-HDL and [3H]LPS-HDL was again found principally in the adrenal gland and liver. The results indicate that the sites of tissue uptake of bacterial LPS are strongly influenced by binding of LPS to HDL. In particular, LPS-HDL binding may be an important determinant of the extent to which LPS are taken up by the adrenal gland during bacterial sepsis.
机译:将革兰氏阴性细菌脂多糖(LPS)静脉注射到兔或大鼠中时,它们会与血浆脂蛋白结合,特别是与高密度脂蛋白(HDL)结合。进行本研究以检查从循环中除去LPS-HDL复合物并被各种组织吸收的机制。我们的方法是比较大鼠和松鼠猴中特定组织结合位点以及HDL和LPS-HDL复合物的摄取情况。在大鼠中,主要在肾上腺,卵巢,肝脏和脾脏中证明了同源125 I-HDL的结合。 [3H] LPS-HDL复合物(通过鼠伤寒沙门氏菌[3H] LPS与大鼠HDL和不含脂蛋白的血浆孵育体外产生)与相同组织结合,但亲和力明显较低。通过两种方式证明了125I-HDL和[3H] LPS-HDL与这些器官的结合特异性。首先,通过将HDL-胆固醇的循环水平从32mg / dl提高到140mg / dl,消除了两种放射性标记的制剂的组织结合。其次,用地塞米松治疗动物消除了两种HDL制剂与肾上腺的特异性结合,而给予肾上腺皮质激素增加了两种制剂的特异性肾上腺结合。 125I-HDL的稳态血浆清除率等于774 +/- 29微升/小时,而LPS-HDL复合物的稳态血浆清除率则明显更低(557 +/- 39微升/小时),这一发现大概反映了各种组织结合LPS-HDL复合物。在松鼠猴中也进行了结合研究,松鼠猴具有与大鼠相同的循环HDL胆固醇水平,但低密度脂蛋白中胆固醇的含量几乎高出三倍。再次主要在肾上腺和肝脏中发现了同源125 I-HDL和[3H] LPS-HDL的特异性结合。结果表明,细菌LPS的组织摄取部位受LPS与HDL结合的强烈影响。特别地,LPS-HDL结合可能是细菌败血症过程中肾上腺摄取LPS程度的重要决定因素。

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