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首页> 外文期刊>Japanese Journal of Pharmacology >EFFECTS OF GLUCURONOLACTONE AND THE OTHER CARBOHYDRATES ON THE BIOCHEMICAL CHANGES PRODUCED IN THE LIVING BODY OF RATS BY HARD EXERCISE
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EFFECTS OF GLUCURONOLACTONE AND THE OTHER CARBOHYDRATES ON THE BIOCHEMICAL CHANGES PRODUCED IN THE LIVING BODY OF RATS BY HARD EXERCISE

机译:葡萄糖内酯和其他碳水化合物对剧烈运动大鼠体内生化变化的影响。

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摘要

References(13) Cited-By(5) It has been generally recognized that in a living body various biochemical changes were induced as a consequence of hard physical exercise. In the previous paper (1), the authors reported on the metabolism of glucuronic acid in the case of fatigue by physical exercise. This report was summarized as follows: the toxic (amine-like) substance in a living body increased due to physical exercise, and resulted in fatigue. The glucuronic acid content of urine, serum, liver and kidney, and the hepatic glycogen content of a living body decreased. The activity of o-aminophenylglucuronide synthesis of rat's liver was inhibited after hard physical exercise. However, these phenomena were significantly blocked by the administration of glucuronolactone. The arrest of an isolated frog heart due to the accumulation of toxic substance was checked, both prophylactically and therapeutically, by the administration of glucuronolactone. Dutton et al. (2-8) have recently proved that glucuronic acid exerted its effect after it was converted into uridine-diphospho-glucuronic acid. It is therefore apparent that exogenous glucuronic acid cannot exert its effect unless it is changed into uridine-diphospho-glucuronic acid through the Xylulose pathway, or different pathway not yet known. Though the authors have no description of the mechanism of these pathway at present, it is a fact that glucuronolactone can inhibit the toxic substance which stopped the beating of a frog's heart. As well known, uridine-diphospho-glucuronic acid is converted from various kinds of carbohydrate, namely glucose, galactose, glycogen and sodium pyruvate. The authors therefore proceeded to ascertain the effects of these carbohydrates and glucuronolactone upon the swimming-record, o-aminophenylglucuronide synthesis, glucuronic acid content, ascorbic acid content, blood sugar content, hepatic glycogen content, and β-D-glucuronide glucuronohydolase activity in albino rats made to swim hard.
机译:参考文献(13)Cited-By(5)人们普遍认识到,由于剧烈运动,在生物体内诱发了各种生化变化。在先前的论文(1)中,作者报道了体育锻炼引起疲劳时葡萄糖醛酸的代谢。该报告总结如下:由于体育锻炼,活体内的有毒(胺类)物质增加,并导致疲劳。尿,血清,肝和肾的葡萄糖醛酸含量以及活体的肝糖原含量降低。剧烈运动后,大鼠肝脏中邻氨基苯基葡萄糖醛酸苷的合成活性受到抑制。然而,这些现象被葡萄糖醛酸内酯的施用显着地阻断了。通过施用葡糖醛酸内酯在预防和治疗上检查了由于有毒物质的积累而导致的离体蛙心的停止。 Dutton等。 (2-8)最近证明了葡萄糖醛酸在转化为尿苷-二磷酸-葡萄糖醛酸后发挥了作用。因此,显然外源葡萄糖醛酸不能发挥其作用,除非它通过木酮糖途径或其他未知途径变成尿苷-二磷酸-葡萄糖醛酸。尽管目前尚无这些途径的机制的描述,但葡萄糖醛酸内酯可抑制有毒物质阻止青蛙心脏跳动,这是事实。众所周知,尿苷-二磷酸-葡萄糖醛酸是从各种碳水化合物,即葡萄糖,半乳糖,糖原和丙酮酸钠转化而来的。因此,作者着手确定了这些碳水化合物和葡萄糖醛酸内酯对游泳记录,邻氨基苯基葡萄糖醛酸内酯合成,葡萄糖醛酸含量,抗坏血酸含量,血糖含量,肝糖原含量以及白蛋白中β-D-葡萄糖醛酸苷葡萄糖醛酸醛糖酶活性的影响。老鼠要努力游泳。

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