Lenhard J M, Croom D K, Weiel J E, Winegar D A
Department of Metabolic Diseases, GlaxoWellcome Inc, Research Triangle Park, NC 27709, USA.
Arterioscler Thromb Vasc Biol. 2000 Dec;20(12):2625-9. doi: 10.1161/01.atv.20.12.2625.
Hyperlipidemia may complicate the use of HIV protease inhibitors (PIs) in AIDS therapy. To determine the cause of hyperlipidemia, the effect of PIs on lipid metabolism was examined with HepG2 liver cells and AKR/J mice. In HepG2 cells, the PIs ABT-378, nelfinavir, ritonavir, and saquinavir stimulated triglyceride synthesis; ritonavir increased cholesterol synthesis; and amprenavir and indinavir had no effect. Moreover, nelfinavir increased mRNA expression of diacylglycerol acyltransferase and fatty acid synthase. The retinoid X receptor agonist LG100268, but not the antagonist LG100754, further increased PI-stimulated triglyceride synthesis and mRNA expression of fatty acid synthase in vitro. In fed mice, nelfinavir or ritonavir did not affect serum glucose and cholesterol, whereas triglyceride and fatty acids increased 57% to 108%. In fasted mice, ritonavir increased serum glucose by 29%, cholesterol by 40%, and triglyceride by 99%, whereas nelfinavir had no effect, suggesting these PIs have different effects on metabolism. Consistent with the in vitro results, nelfinavir and ritonavir increased triglyceride 2- to 3-fold in fasted mice injected with Triton WR-1339, an inhibitor of triglyceride clearance. We propose that PI-associated hyperlipidemia is due to increased hepatic triglyceride synthesis and suggest that retinoids or meal restriction influences the effects of select PIs on lipid metabolism.
高脂血症可能会使艾滋病治疗中使用的HIV蛋白酶抑制剂(PIs)变得复杂。为了确定高脂血症的病因,我们用HepG2肝细胞和AKR/J小鼠研究了PIs对脂质代谢的影响。在HepG2细胞中,PIs ABT-378、奈非那韦、利托那韦和沙奎那韦刺激甘油三酯合成;利托那韦增加胆固醇合成;而安普那韦和茚地那韦没有影响。此外,奈非那韦增加了二酰基甘油酰基转移酶和脂肪酸合酶的mRNA表达。视黄酸X受体激动剂LG100268而非拮抗剂LG100754,在体外进一步增加了PI刺激的甘油三酯合成和脂肪酸合酶的mRNA表达。在喂食的小鼠中,奈非那韦或利托那韦不影响血清葡萄糖和胆固醇,而甘油三酯和脂肪酸增加了57%至108%。在禁食的小鼠中,利托那韦使血清葡萄糖增加29%,胆固醇增加40%,甘油三酯增加99%,而奈非那韦没有影响,这表明这些PIs对代谢有不同的影响。与体外结果一致,奈非那韦和利托那韦使注射了甘油三酯清除抑制剂Triton WR-1339的禁食小鼠的甘油三酯增加了2至3倍。我们认为PI相关的高脂血症是由于肝脏甘油三酯合成增加所致,并表明类维生素A或饮食限制会影响特定PIs对脂质代谢的作用。