Sparks C E, Sparks J D, Bolognino M, Salhanick A, Strumph P S, Amatruda J M
Metabolism. 1986 Dec;35(12):1128-36. doi: 10.1016/0026-0495(86)90026-0.
Lipoprotein synthesis and secretion were examined in primary cultures of rat hepatocytes cultured on collagen-coated plates and incubated with pharmacologic and physiologic concentrations of insulin. Media insulin concentration declined rapidly over the course of incubation indicating that hepatocytes rapidly degrade insulin. When insulin was present in the media, cellular triglyceride accumulated while lipid secretion declined. Insulin inhibited the incorporation of labeled amino acids into total secretory lipoprotein apoproteins and apolipoprotein B (apo B) as well as apo B mass as measured by monoclonal radioimmunoassay. The effect of insulin on apo B secretion occurred as early as three hours after the addition of insulin to the culture media and both apo B of higher molecular weight (apo BH) and apo B of lower molecular weight (apo BL) were affected. Cellular apo B did not accumulate within cells. The majority of secretory lipid radioactivity synthesized from acetate was in VLDL density lipoproteins. The composition of newly synthesized lipids as assessed by thin layer chromatography was not significantly altered with insulin. These studies support the finding that insulin inhibits VLDL secretion by hepatocytes while at the same time stimulating overall triglyceride synthesis. A suggested mechanism is that insulin uncouples triglyceride and apo B synthesis, which influences subsequent lipoprotein assembly and secretory pathways. These results are consistent with the concept that postprandial insulin release inhibits hepatic lipoprotein secretion while intestinal lipoprotein metabolic pathways are most active.
在胶原包被平板上培养的原代大鼠肝细胞中,研究了脂蛋白的合成与分泌,并使其与药理浓度和生理浓度的胰岛素一同孵育。在孵育过程中,培养基中的胰岛素浓度迅速下降,这表明肝细胞能快速降解胰岛素。当培养基中存在胰岛素时,细胞内甘油三酯会积累,而脂质分泌则会减少。胰岛素抑制标记氨基酸掺入总分泌性脂蛋白载脂蛋白和载脂蛋白B(apo B),以及通过单克隆放射免疫测定法测得的apo B质量。胰岛素对apo B分泌的影响早在向培养基中添加胰岛素后三小时就已出现,高分子量的apo B(apo BH)和低分子量的apo B(apo BL)均受到影响。细胞内的apo B并未在细胞内积累。由乙酸盐合成的大多数分泌性脂质放射性存在于极低密度脂蛋白(VLDL)密度的脂蛋白中。通过薄层色谱法评估,新合成脂质的组成在胰岛素作用下未发生显著改变。这些研究支持了以下发现:胰岛素抑制肝细胞分泌VLDL,同时刺激整体甘油三酯合成。一种推测的机制是,胰岛素使甘油三酯和apo B合成解偶联,这会影响随后的脂蛋白组装和分泌途径。这些结果与餐后胰岛素释放抑制肝脏脂蛋白分泌而肠道脂蛋白代谢途径最为活跃这一概念相符。