Price M E, Cornelius R M, Brash J L
Department of Chemical Engineering, McMaster University, 1280 Main Street West, L8S 4L7, Hamilton, ON, Canada.
Biochim Biophys Acta. 2001 Jun 6;1512(2):191-205. doi: 10.1016/s0005-2736(01)00330-3.
Unmodified and polyethylene glycol (PEG) modified neutral and negatively charged liposomes were prepared by freeze-thaw and extrusion followed by chromatographic purification. The effects of PEG molecular weight (PEG 550, 2000, 5000), PEG loading (0-15 mol%), and liposome surface charge on fibrinogen adsorption were quantified using radiolabeling techniques. All adsorption isotherms increased monotonically over the concentration range 0-3 mg/ml and adsorption levels were low. Negatively charged liposomes adsorbed significantly more fibrinogen than neutral liposomes. PEG modification had no effect on fibrinogen adsorption to neutral liposomes. An inverse relationship was found between PEG loading of negatively charged liposomes and fibrinogen adsorption. PEGs of all three molecular weights at a loading of 5 mol% reduced fibrinogen adsorption to negatively charged liposomes. Protein adsorption from diluted plasma (10% normal strength) to four different liposome types (neutral, PEG-neutral, negatively charged, and PEG-negatively charged) was investigated using gel electrophoresis and immunoblotting. The profiles of adsorbed proteins were similar on all four liposome types, but distinctly different from the profile of plasma itself, indicating a partitioning effect of the lipid surfaces. alpha2-macroglobulin and fibronectin were significantly enriched on the liposomes whereas albumin, transferrin, and fibrinogen were depleted compared to plasma. Apolipoprotein AI was a major component of the adsorbed protein layers. The blot of complement protein C3 adsorbed on the liposomes suggested that the complement system was activated.
通过冻融和挤压,随后进行色谱纯化,制备了未修饰的以及聚乙二醇(PEG)修饰的中性和带负电荷的脂质体。使用放射性标记技术定量研究了PEG分子量(PEG 550、2000、5000)、PEG负载量(0 - 15 mol%)和脂质体表面电荷对纤维蛋白原吸附的影响。在0 - 3 mg/ml的浓度范围内,所有吸附等温线均单调增加,且吸附水平较低。带负电荷的脂质体比中性脂质体吸附的纤维蛋白原明显更多。PEG修饰对中性脂质体吸附纤维蛋白原没有影响。发现带负电荷脂质体的PEG负载量与纤维蛋白原吸附之间呈反比关系。负载量为5 mol%的所有三种分子量的PEG均降低了带负电荷脂质体对纤维蛋白原的吸附。使用凝胶电泳和免疫印迹法研究了从稀释血浆(10%正常强度)到四种不同类型脂质体(中性、PEG - 中性、带负电荷和PEG - 带负电荷)的蛋白质吸附。在所有四种脂质体类型上吸附的蛋白质谱相似,但与血浆本身的谱明显不同,表明脂质表面存在分配效应。与血浆相比,α2 - 巨球蛋白和纤连蛋白在脂质体上显著富集,而白蛋白、转铁蛋白和纤维蛋白原则减少。载脂蛋白AI是吸附蛋白层的主要成分。吸附在脂质体上的补体蛋白C3的印迹表明补体系统被激活。