Martin J C, Grégoire S, Siess M H, Genty M, Chardigny J M, Berdeaux O, Juanéda P, Sébédio J L
I.N.R.A, Unité de Nutrition Lipidique, Dijon, France.
Lipids. 2000 Jan;35(1):91-8. doi: 10.1007/s11745-000-0499-9.
Male weanling Wistar rats (n = 15), weighing 200-220 g, were allocated for 6 wk to diets containing 1% (by weight) of conjugated linoleic acid (CLA), either as the 9c,11 t-isomer, the 10t,12c-isomer, or as a mixture containing 45% of each of these isomers. The five rats of the control group received 1% of oleic acid instead. Selected enzyme activities were determined in different tissues after cellular subfractionation. None of the CLA-diet induced a hepatic peroxisome-proliferation response, as evidenced by a lack of change in the activity of some characteristic enzymes [i.e., acyl-CoA oxidase, CYP4A1, but also carnitine palmitoyltransferase-I (CPT-I)] or enzyme affected by peroxisome-proliferators (glutathione S-transferase). In addition to the liver, the activity of the rate-limiting beta-oxidation enzyme in mitochondria, CPT-I, did not change either in skeletal muscle or in heart. Conversely, its activity increased more than 30% in the control value in epididymal adipose tissue of the animals fed the CLA-diets containing the 10t,12c-isomer. Conversely, the activity of phosphatidate phosphohydrolase, a rate-limiting enzyme in glycerolipid neosynthesis, remained unchanged in adipose tissue. Kinetic studies conducted on hepatic CPT-I and peroxisomal acyl-CoA oxidase with CoA derivatives predicted a different channeling of CLA isomers through the mitochondrial or the peroxisomal oxidation pathways. In conclusion, the 10t,12c-CLA isomer seems to be more efficiently utilized by the cells than its 9c,11t homolog, though the Wistar rat species appeared to be poorly responsive to CLA diets for the effects measured.
体重200 - 220克的雄性断乳Wistar大鼠(n = 15),被分配至含1%(按重量计)共轭亚油酸(CLA)的日粮中6周,CLA分别为9c,11t - 异构体、10t,12c - 异构体,或含这两种异构体各45%的混合物。对照组的五只大鼠则摄入1%的油酸。细胞分级分离后,测定了不同组织中选定的酶活性。CLA日粮均未诱导肝过氧化物酶体增殖反应,一些特征性酶[即酰基辅酶A氧化酶、CYP4A1,还有肉碱棕榈酰转移酶 - I(CPT - I)]或受过氧化物酶体增殖剂影响的酶(谷胱甘肽S - 转移酶)活性未发生变化可证明此点。除肝脏外,线粒体中限速β - 氧化酶CPT - I的活性在骨骼肌或心脏中也未改变。相反,在喂食含10t,12c - 异构体CLA日粮的动物附睾脂肪组织中,其活性比对照值增加了30%以上。相反,甘油olipid新合成中的限速酶磷脂酸磷酸水解酶的活性在脂肪组织中保持不变。对肝脏CPT - I和过氧化物酶体酰基辅酶A氧化酶与辅酶A衍生物进行的动力学研究预测,CLA异构体通过线粒体或过氧化物酶体氧化途径的通道化不同。总之,10t,12c - CLA异构体似乎比其9c,11t同系物更能被细胞有效利用,尽管就所测效应而言,Wistar大鼠品种对CLA日粮的反应似乎较差。