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首页> 外文期刊>Journal of liposome research >Activation of the human complement system by cholesterol-rich and PEGylated liposomes-modulation of cholesterol-rich liposome-mediated complement activation by elevated serum LDL and HDL levels.
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Activation of the human complement system by cholesterol-rich and PEGylated liposomes-modulation of cholesterol-rich liposome-mediated complement activation by elevated serum LDL and HDL levels.

机译:通过升高的血清LDL和HDL水平激活胆固醇的富含胆固醇和聚乙二醇化脂质体 - 调节胆固醇的脂质体介导的补体活化的活化。

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摘要

Intravenously infused liposomes may induce cardiopulmonary distress in some human subjects, which is a manifestation of "complement activation-related pseudoallergy." We have now examined liposome-mediated complement activation in human sera with elevated lipoprotein (LDL and HDL) levels, since abnormal or racial differences in serum lipid profiles seem to modulate the extent of complement activation and associated adverse responses. In accordance with our earlier observations, cholesterol-rich (45 mol% cholesterol) liposomes activated human complement, as reflected by a significant rise in serum level of S-protein-bound form of the terminal complex (SC5b-9). However, liposome-induced rise of SC5b-9 was significantly suppressed when serum HDL cholesterol levels increased by 30%. Increase of serum LDL to levels similar to that observed in heterozygous familial hypercholesterolemia also suppressed liposome-mediated SC5b-9 generation considerably. While intravenous injection of cholesterol-rich liposomes into pigs was associated with an immediate circulatory collapse, the drop in systemic arterial pressure following injection of liposomes preincubated with human lipoproteins was slow and extended. Therefore, surface-associated lipoprotein particles (or apolipoproteins) seem to lessen liposome-induced adverse haemodynamic changes, possibly as a consequence of suppressed complement activation in vivo. PEGylated liposomes were also capable of activating the human complement system, and the presence of surface projected methoxypoly(ethylene glycol) chains did not interfere with generation of C3 opsonic fragments. We also show that poly(ethylene glycol) is not responsible for PEGylated liposome-mediated complement activation. The net anionic charge on the phosphate moiety of the phospholipid-mPEG conjugate seemed to play a critical role in activation of both the classical and alternative pathways of the complement system.
机译:静脉内注入的脂质体可能会在某些人类受试者中诱导心肺血症,这是“补体激活相关的伪验证”的表现。现在,我们现在检查了用升高的脂蛋白(LDL和HDL)水平的人血清中血糖组介导的补体激活,因为血清脂质谱的异常或种族差异似乎调节了补体激活的程度和相关的不良反应。根据我们早期的观察,富含胆固醇(45mol%胆固醇)脂质体活化人的补体,反映了末端复合物(SC5B-9)的S蛋白染色形式的血清水平显着上升。然而,当血清HDL胆固醇水平增加30%时,显着抑制了SC5B-9的脂质体诱导的升高。血清LDL的增加与在杂合族家族性高胆固醇血症中观察到的水平也显着抑制了脂质体介导的SC5B-9。虽然静脉注射富含胆固醇的脂质体进入猪,但与立即循环塌陷相关,在预孵育与人脂蛋白预孵育后的脂质体之后的全身动脉压的下降缓慢且延伸。因此,表面相关的脂蛋白颗粒(或载脂蛋白)似乎减少脂质体诱导的不利血液动力学变化,可能是由于体内抑制补体激活的结果。聚乙二醇化脂质体也能够激活人补体系统,并且表面突出的甲氧基聚合物(乙二醇)链的存在并未干扰C3 Opsonic片段的产生。我们还表明聚(乙二醇)不负责聚乙二醇化脂质体介导的补体活化。磷脂-MPEG缀合物的磷酸盐部分上的净阴离子电荷似乎在激活补体系统的经典和替代途径的激活中起重要作用。

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