Chiu G N, Bally M B, Mayer L D
Faculty of Pharmaceutical Sciences, University of British Columbia, Vancouver, Canada.
Biochim Biophys Acta. 2001 Feb 9;1510(1-2):56-69. doi: 10.1016/s0005-2736(00)00335-7.
Incorporation of 5 mol% poly(ethylene glycol)-conjugated lipids (PEG-lipids) has been shown to extend the circulation longevity of neutral liposomes due to steric repulsion of PEG at the membrane surface. The effects of PEG-lipids on protein interactions with biologically reactive membranes were examined using phosphatidylserine (PS) containing liposomes as the model. Incorporating 15 mol% 1,2-distearoyl-sn-glycero-3-phosphoethanolamine (DSPE)-PEG 2000 into PS liposomes resulted in circulation lifetimes comparable to that obtained with neutral liposomes containing 5 mol% DSPE-PEG 2000. These results suggested that 15 mol% DSPE-PEG 2000 may be effective in protecting PS liposomes from the high affinity, PS-mediated binding of plasma proteins. This was determined by monitoring the effects of PEG-lipids on calcium-mediated blood coagulation protein interactions with PS liposomes. Prothrombin binding and procoagulant activity of PS liposomes could be inhibited >80% when 15 mol% DSPE-PEG 2000 was used. These results are consistent with PS on membrane surfaces forming transient nucleation sites for protein binding that may result in lateral exclusion of PEG-lipids incorporated at <10 mol%. These nucleation sites may be inaccessible when PEG-lipids are present at elevated levels where they adopt a highly compressed brush conformation. This suggests that liposomes with reactive groups and PEG-lipids may be appropriately designed to impart selectivity to protein interactions with membrane surfaces.
已证明,掺入5摩尔%的聚乙二醇共轭脂质(PEG-脂质)可延长中性脂质体的循环寿命,这是由于膜表面PEG的空间排斥作用。以含磷脂酰丝氨酸(PS)的脂质体为模型,研究了PEG-脂质对蛋白质与生物活性膜相互作用的影响。将15摩尔%的1,2-二硬脂酰-sn-甘油-3-磷酸乙醇胺(DSPE)-PEG 2000掺入PS脂质体中,其循环寿命与含有5摩尔%DSPE-PEG 2000的中性脂质体相当。这些结果表明,15摩尔%的DSPE-PEG 2000可能有效地保护PS脂质体免受血浆蛋白与PS的高亲和力介导结合。这是通过监测PEG-脂质对钙介导的血液凝固蛋白与PS脂质体相互作用的影响来确定的。当使用15摩尔%的DSPE-PEG 2000时,PS脂质体的凝血酶原结合和促凝血活性可被抑制80%以上。这些结果与膜表面的PS形成蛋白质结合的瞬时成核位点一致,这可能导致掺入量小于10摩尔%的PEG-脂质的侧向排斥。当PEG-脂质以较高水平存在并采用高度压缩的刷状构象时,这些成核位点可能无法接近。这表明,具有反应性基团和PEG-脂质的脂质体可能经过适当设计,以赋予蛋白质与膜表面相互作用的选择性。