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脂质体作为脂肪酸在离体大鼠肝脏中的载体:对能量代谢和离体线粒体活性的影响。

Liposomes as fatty acids carriers in isolated rat liver: effect on energy metabolism and on isolated mitochondria activity.

作者信息

Delmas-Beauvieux M C, Leducq N, Thiaudière E, Diolez P, Gin H, Canioni P, Gallis J L

机构信息

Service de Nutrition et Diabétologie, Hôpital Haut-Lévêque, Pessac, France.

出版信息

MAGMA. 2000 Feb;10(1):43-51. doi: 10.1007/BF02613111.

Abstract

The effects of fatty acids (FA)-carrier, egg-lecithin liposomes (LIPO) as alternative to BSA, on ATP, glycogen and glucose contents in isolated perfused liver of fed rats were non-invasively studied using 31P/13C nuclear magnetic resonance (NMR). Oxidative phosphorylation was studied in isolated mitochondria from the same liver consecutively to the NMR experiments. ATP content decreased slowly and ATP turnover was similar during the perfusion with saline solution (KHB) or LIPO. However, LIPO induced an enhancement of respiratory control ratio in isolated mitochondria. Tissue glycogen and glucose content decreased when FA (linoleate or linolenate) were perfused with defatted BSA (3%) or LIPO (600 mg/l) whereas glucose excretion level was unchanged and lactate excretion tended to increase, reflecting changes in the cytosolic redox state and/or an enhancement of glycolysis. Addition of FA (0.5 or 1.5 mM) to LIPO caused a dramatic fall in liver ATP, a mitochondrial uncoupling and an impairment of the phosphorylation activity. Perfusion with FA (1.5 mM) carried by BSA significantly increased the ATP degradation without change of mitochondrial function. Owing to the higher affinity of BSA than LIPO for FA, these latter could be more easily released from complex LIPO-FA, increasing their uncoupling effect. Hence, the FA concentrations have to be largely decreased from the above currently used concentrations to avoid this effect. It will then be possible to minimize the effector action of FA and to study their more specific metabolic function as fuel. It was concluded that LIPO were appropriate carriers to study the different metabolic effects of FA.

摘要

使用31P/13C核磁共振(NMR)技术,对脂肪酸(FA)-载体、作为牛血清白蛋白替代物的卵磷脂脂质体(LIPO)对喂食大鼠离体灌注肝脏中ATP、糖原和葡萄糖含量的影响进行了非侵入性研究。在NMR实验之后,对来自同一肝脏的离体线粒体中的氧化磷酸化进行了研究。在灌注生理盐水(KHB)或LIPO期间,ATP含量缓慢下降,ATP周转率相似。然而,LIPO可诱导离体线粒体中呼吸控制率升高。当脂肪酸(亚油酸或亚麻酸)与脱脂牛血清白蛋白(3%)或LIPO(600 mg/l)一起灌注时,组织糖原和葡萄糖含量降低,而葡萄糖排泄水平不变,乳酸排泄有增加趋势,这反映了细胞溶质氧化还原状态的变化和/或糖酵解的增强。向LIPO中添加脂肪酸(0.5或1.5 mM)会导致肝脏ATP急剧下降、线粒体解偶联和磷酸化活性受损。用牛血清白蛋白携带的脂肪酸(1.5 mM)灌注可显著增加ATP降解,而线粒体功能无变化。由于牛血清白蛋白对脂肪酸的亲和力高于LIPO,后者更容易从LIPO-脂肪酸复合物中释放出来,从而增强其解偶联作用。因此,必须将脂肪酸浓度从目前使用的浓度大幅降低,以避免这种影响。这样就有可能将脂肪酸的效应作用降至最低,并研究其作为燃料的更具体的代谢功能。得出的结论是,LIPO是研究脂肪酸不同代谢效应的合适载体。

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