Terpstra A H, Nicolosi R J, Herbert P N
Brown University Program in Medicine, Miriam Hospital, Providence, RI 02906.
J Lipid Res. 1989 Nov;30(11):1663-71.
We have developed and validated a method for in vitro incorporation of radiolabeled cholesteryl esters into low density (LDL) and high density lipoproteins (HDL). Radiolabeled cholesteryl esters dissolved in absolute ethanol were mixed with LDL or HDL in the presence of lipoprotein-deficient serum (LPDS) as a source of core lipid transfer activity. The efficiency of incorporation was dependent on: a) the core lipid transfer activity and quantity of LPDS, b) the mass of added radiolabeled cholesteryl esters, c) the length of incubation, and d) the amount of acceptor lipoprotein cholesterol. The tracer incorporation was documented by repeat density gradient ultracentrifugation, agarose gel electrophoresis, and precipitation with heparin-MnCl2. The radiolabeling conditions did not affect the following properties of the lipoproteins: 1) chemical composition, 2) electrophoretic mobility on agarose gels, 3) hydrated density, 4) distribution of apoproteins on SDS gels, 5) plasma clearance rates, and 6) immunoprecipitability of HDL apoproteins A-I and A-II. Rat HDL containing radiolabeled cholesteryl esters incorporated in vitro had plasma disappearance rates identical to HDL radiolabeled in vivo.
我们已经开发并验证了一种将放射性标记的胆固醇酯体外掺入低密度脂蛋白(LDL)和高密度脂蛋白(HDL)的方法。将溶解于无水乙醇中的放射性标记胆固醇酯与LDL或HDL在缺乏脂蛋白的血清(LPDS)存在下混合,LPDS作为核心脂质转移活性的来源。掺入效率取决于:a)LPDS的核心脂质转移活性和数量,b)添加的放射性标记胆固醇酯的质量,c)孵育时间,以及d)受体脂蛋白胆固醇的量。通过重复密度梯度超速离心、琼脂糖凝胶电泳和用肝素-MnCl2沉淀来记录示踪剂的掺入情况。放射性标记条件不影响脂蛋白的以下特性:1)化学组成,2)在琼脂糖凝胶上的电泳迁移率,3)水合密度,4)载脂蛋白在SDS凝胶上的分布,5)血浆清除率,以及6)HDL载脂蛋白A-I和A-II的免疫沉淀性。体外掺入放射性标记胆固醇酯的大鼠HDL的血浆消失率与体内放射性标记的HDL相同。