Dobner P, Engelmann B
Physiologisches Institut der Universität München, D-80336 Munich, Germany.
Am J Physiol. 1998 Nov;275(5):E777-84. doi: 10.1152/ajpendo.1998.275.5.E777.
After the rapid extracorporal reduction of plasma low-density lipoprotein (LDL) by LDL apheresis, the percentages of arachidonic acid (AA)-containing species of phosphatidylcholine (PC) were lowered in the plasma of patients with hypercholesterolemia. The same PC species with AA were also decreased in the patient's platelets. Thus the supply of phospholipid-bound AA from LDL to the platelets was probably diminished after the apheresis. We therefore analyzed the concentration dependence of the transfer of phospholipid-bound AA from LDL to the platelets under in vitro conditions. The amount of [14C]AA-PC transferred to platelets strongly increased upon elevation of LDL from 0.1 to 1 mg protein/ml, with a less marked elevation being noted at higher LDL concentrations. After stimulation with thrombin (0.5 U/ml), 7.1% ([14C]AA-PC) and 10.6% ([14C]AA-phosphatidylethanolamine) of the 14C transferred from LDL to the platelets were recovered in the eicosanoids [14C]thromboxane B2 (TxB2) plus 12-[14C]hydroxyeicosatetraenoic acid. Experimental increases and reductions of the [14C]AA-PC import were associated with comparable modifications in the [14C]TxB2 production of the platelets. Accordingly, the import of phospholipid-bound [14C]AA is a necessary prerequisite for the formation of 14C-labeled eicosanoids. In summary, the transfer of phospholipids from LDL to the platelets markedly varies within the physiological range of lipoprotein concentrations. LDL contributes to platelet eicosanoid formation by supplying platelets with phospholipid-bound AA.
通过低密度脂蛋白(LDL)吸附术快速体外降低血浆低密度脂蛋白后,高胆固醇血症患者血浆中含花生四烯酸(AA)的磷脂酰胆碱(PC)种类的百分比降低。患者血小板中同样含AA的PC种类也减少。因此,吸附术后从LDL到血小板的磷脂结合型AA的供应可能减少。我们因此在体外条件下分析了磷脂结合型AA从LDL转移至血小板的浓度依赖性。当LDL从0.1升高至1mg蛋白/ml时,转移至血小板的[14C]AA-PC量显著增加,在更高的LDL浓度下升高不太明显。用凝血酶(0.5U/ml)刺激后,从LDL转移至血小板的14C中,7.1%([14C]AA-PC)和10.6%([14C]AA-磷脂酰乙醇胺)在类花生酸[14C]血栓素B2(TxB2)加12-[14C]羟基二十碳四烯酸中被回收。实验性增加和减少[14C]AA-PC的导入与血小板[14C]TxB2生成的类似变化相关。因此,磷脂结合型[14C]AA的导入是形成14C标记类花生酸的必要前提。总之,在脂蛋白浓度的生理范围内,磷脂从LDL转移至血小板明显不同。LDL通过为血小板提供磷脂结合型AA来促进血小板类花生酸的形成。