Demacker P N, Hijmans A G, Stalenhoef A F, van 't Laar A
Department of Medicine, St. Radboud Hospital, University of Nijmegen, The Netherlands.
Atherosclerosis. 1988 Feb;69(2-3):173-83. doi: 10.1016/0021-9150(88)90012-3.
In order to investigate the in vivo function of hepatic lipase, cats were injected with anti-cat hepatic lipase antibodies which produced a complete and specific inhibition of heparin-releasable hepatic lipase. The cat was chosen as an animal model because it displays, like man, a relative deficiency of lipoprotein lipase compared to hepatic lipase and because the possession of two subfractions of high density lipoproteins, HDL2 and HDL3. In fasted cats no changes were observed in plasma triglycerides or phospholipids. In fed animals triglycerides increased considerably, indicating that hepatic lipase may have a function in the postprandial phase. In fat-loaded cats (6 g of fat/kg) triglycerides in the d less than 1.019 g/ml fraction increased from 4 h after the blockade due to accumulation of lipoproteins with pre-beta-mobility containing the apoproteins, apo B-100, apo E and apo A-I. Apo B-48 did not accumulate consistently. Phospholipids in the HDL2-fraction and those in the HDL3-fraction of the fat-loaded cats tended to increase and decrease from 6 and 9 h after the blockade, respectively. The absolute change in HDL2 phospholipids approximated that of HDL3-phospholipids. Overall, the density of HDL particles decreased, apparently secondary to the accumulation of apo A-I in the d less than 1.019 g/ml fraction. Our findings suggest that hepatic lipase is involved in the hydrolysis of a special class of apo A-I containing triglyceride-rich lipoproteins synthesised in the postprandial phase.
为了研究肝脂肪酶的体内功能,给猫注射抗猫肝脂肪酶抗体,该抗体可完全特异性抑制肝素可释放的肝脂肪酶。选择猫作为动物模型是因为它与人一样,与肝脂肪酶相比脂蛋白脂肪酶相对缺乏,并且它拥有高密度脂蛋白的两个亚组分,即HDL2和HDL3。在禁食的猫中,血浆甘油三酯或磷脂未观察到变化。在喂食的动物中,甘油三酯显著增加,表明肝脂肪酶可能在餐后阶段发挥作用。在脂肪负荷的猫(6g脂肪/kg)中,由于含有载脂蛋白apo B-100、apo E和apo A-I的前β迁移率脂蛋白的积累,d小于1.019g/ml组分中的甘油三酯在阻断后4小时开始增加。apo B-48没有持续积累。脂肪负荷猫的HDL2组分和HDL3组分中的磷脂分别在阻断后6小时和9小时趋于增加和减少。HDL2磷脂的绝对变化与HDL3磷脂的近似。总体而言,HDL颗粒的密度降低,显然是由于apo A-I在d小于1.019g/ml组分中的积累所致。我们的研究结果表明,肝脂肪酶参与了餐后阶段合成的一类特殊的含apo A-I的富含甘油三酯脂蛋白的水解。