Campbell T C, Hayes J R
Fed Proc. 1976 Nov;35(13):2470-4.
Dietary protein deficiency is known to modify the response to the pharmacotoxicological activities of drugs and foreign compounds, due in part to altered rates of metabolism. Prediction of whether in vivo susceptibilities to foreign compounds are increased or decreased in protein deficient animals has been said to be related to the relative toxicites of the metabolic products. We have shown that weanling rats fed semipurified casein diets for 15 days show a 75% depression of hepatic microsomal mixed function oxidase activities. About one-fourth of this decrease is due to a retardation of the normal rate of liver cell proliferation and less microsomal protein; the remaining three-fourths is due to a reduction of the specific enzyme activity. This latter decrease is closely correlated with similar decreases in cytochrome P-450 and cytochrome c reductase activities and cytochrome P-450 contents. Although protein deficiency affects the relative contents of phosphatidylcholine and cytochrome P-450, this does not result in modifications of the Km for metabolism, as is seen with phenobarbital administration in the various dietary groups. The depression of mixed function oxidase enzyme activities caused by feeding the protein deficient diet for 15 days can be restored to normal by feeding the 20% casein diets for an additional 30 days in the case of aniline hydroxylase but only partially in the case of ethylmorphine N-demethylase. The complexities of determining the role of metabolism as a modulator of protein deficiency effects on foreign compound toxicity are discussed.
已知膳食蛋白质缺乏会改变对药物和外来化合物的药物毒理学活性的反应,部分原因是代谢速率改变。据说,预测蛋白质缺乏动物体内对外来化合物的易感性是增加还是降低与代谢产物的相对毒性有关。我们已经表明,用半纯化酪蛋白饮食喂养15天的断奶大鼠,其肝微粒体混合功能氧化酶活性降低了75%。这种降低约四分之一是由于肝细胞正常增殖速率减慢和微粒体蛋白减少;其余四分之三是由于特定酶活性降低。后一种降低与细胞色素P - 450、细胞色素c还原酶活性及细胞色素P - 450含量的类似降低密切相关。尽管蛋白质缺乏会影响磷脂酰胆碱和细胞色素P - 450的相对含量,但这并不会像在不同饮食组中给予苯巴比妥时那样导致代谢的米氏常数发生改变。在苯胺羟化酶的情况下,通过再用20%酪蛋白饮食喂养30天,由喂养15天蛋白质缺乏饮食引起的混合功能氧化酶活性降低可恢复正常,但在乙基吗啡N - 脱甲基酶的情况下只能部分恢复正常。本文讨论了确定代谢作为蛋白质缺乏对外来化合物毒性影响的调节剂的作用的复杂性。