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Potentiation of liposome-induced complement activation by surface-bound albumin

机译:表面结合白蛋白增强脂质体诱导的补体激活

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摘要

Large anionic multilamellar liposomes containing 71% membrane cholesterol (MLV) caused complement (C) activation in human serum in vitro, as reflected in significant rises is S protein-bound terminal complex (SC5b-9) and C3a-desarg levels. Increasing the albumin content in serum by 1-4 g/100 ml led to 50-100% further increase in MLV-induced C activation, while higher amounts of exogenous human serum albumin (HSA) gradually lost the capability to potentiate liposomal C activation. HSA alone hand no influence on SC5b-9 formation at any level below 12%. Complement activation by liposomes and the potentiating effect of supplemental HSA were greatly reduced or eliminated in the absence of C1q or in the presence of 10 mM EGTA/2.5 mM Mg~(2+), pointing to the involvement of the classical pathway. Potentiation of C activation by supplemental HSA was not unique to MLV-induced activation, as deposition of HSA on the membrane of 'Centricon' ultrafiltration units also potentiated the C-activating effect of the polycarbonate membrane. Fatty acid (FA) or non-monomeric protein contamination in HSA were unlikely to be playing a role in the described effects, as 96% pure, FA-rich (Buminate) and 99% pure, FA-free HSA had identical effects on liposomal C activation. While highlighting a new modulatory mechanism on liposomal C activation, the above data raise the possibility that deposition of extravasated HSA at sites of tissue injury may serve a hitherto unrecognized proinflammatory function.
机译:含有71%膜胆固醇(MLV)的大型阴离子多层脂质体在体外引起人血清中的补体(C)活化,这反映在S蛋白结合的末端复合物(SC5b-9)和C3a-desarg水平显着增加。将血清中的白蛋白含量增加1-4 g / 100 ml导致MLV诱导的C激活进一步增加50-100%,而更高数量的外源人血清白蛋白(HSA)逐渐失去了增强脂质体C激活的能力。低于12%的任何水平,仅HSA都不会影响SC5b-9的形成。在没有C1q的情况下或在存在10 mM EGTA / 2.5 mM Mg〜(2+)的情况下,脂质体的补体激活和补充HSA的增强作用被大大降低或消除,这表明经典途径的参与。补充HSA增强C活化并非MLV诱导的活化所独有,因为HSA在“ Centricon”超滤单元膜上的沉积也增强了聚碳酸酯膜的C活化作用。 HSA中的脂肪酸(FA)或非单体蛋白质污染不太可能在上述作用中发挥作用,因为96%的纯,富含FA的(Buminate)和99%的纯,不含FA的HSA对脂质体的作用相同C激活。在强调脂质体C激活的新调节机制的同时,上述数据提出了外渗HSA在组织损伤部位的沉积可能起迄今未认识到的促炎功能的可能性。

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