Kurata N, Privett O S
Lipids. 1980 Dec;15(12):1029-36. doi: 10.1007/BF02534319.
Effects of dietary trans acids on the interconversion of linoleic acid was studied using the liver microsomal fraction of rats fed a semipurified diet containing fat supplements of safflower oil (SAFF), hydrogenated coconut oil (HCO) at 5 and 20 at and 20% levels or a 5% level of a supplement containing 50.3% linolelaidic and 24.3% elaidic acids devoid of cis,cis-linoleic acid (TRANS). Growth rate was suppressed to greater extent with the animals fed the 20% than the 5% level of the HCO-supplemented diets and still further by the TRANS diet compared to the groups fed the SAFF diets. Food intake was greater in the groups fed the HCO than the SAFF-supplemented diets, demonstrating the marked effect of an essential fatty acid (EFA) deficiency on feed efficiency. In contrast to an EFA deficiency produced by the HCO supplement, which stimulated the in vitro liver microsomal biosynthesis of arachidonic acid, diets containing the TRANS supplement exacerabated the EFA deficiency and depressed 6-desaturase activity of the liver microsomal fraction. The liver microsomal fraction of the animals receiving this supplement also was more sensitive to fatty acid inhibition of the desaturation of linoleic acid than those obtained from animals fed either the SAFF or HCO diets. It is suggested that dietary trans acids alter the physical properties of the 6-desaturase enzyme system, suppressing its activity, which increases the saturation of the tissue lipids and, in turn, the requirement for EFA or polyunsaturated fatty acids.
采用半纯化日粮喂养大鼠,该日粮含有5%和20%水平的红花油(SAFF)、氢化椰子油(HCO)脂肪补充剂,或含有50.3%反式亚油酸和24.3%反油酸且不含顺,顺-亚油酸的5%水平补充剂(TRANS),研究了膳食反式酸对亚油酸相互转化的影响。与饲喂SAFF日粮的组相比,饲喂20% HCO补充日粮的动物生长率受到的抑制程度大于饲喂5% HCO补充日粮的动物,而饲喂TRANS日粮的动物生长率受到的抑制程度更大。饲喂HCO的组比饲喂SAFF补充日粮的组采食量更大,这表明必需脂肪酸(EFA)缺乏对饲料效率有显著影响。与HCO补充剂引起的EFA缺乏刺激体外肝脏微粒体中花生四烯酸的生物合成相反,含有TRANS补充剂的日粮加剧了EFA缺乏,并降低了肝脏微粒体部分的6-去饱和酶活性。接受这种补充剂的动物的肝脏微粒体部分对脂肪酸抑制亚油酸去饱和的敏感性也高于饲喂SAFF或HCO日粮的动物。研究表明,膳食反式酸改变了6-去饱和酶系统的物理性质,抑制了其活性,这增加了组织脂质的饱和度,进而增加了对EFA或多不饱和脂肪酸的需求。