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烟酸和烟酰胺在灌注大鼠肠道中的代谢

Metabolism of niacin and niacinamide in perfused rat intestine.

作者信息

Henderson L M, Gross C J

出版信息

J Nutr. 1979 Apr;109(4):654-62. doi: 10.1093/jn/109.4.654.

Abstract

The metabolism of [14C]nicotinic acid and [14C]nicotinamide by perfused rat intestine was studied by analyzing the 14C-products formed at various time intervals after these substrates were administered intravascularly or intralumenally. Intermediates in the Preiss-Handler pathway contained isotope when [14C]nicotinic acid was administered by either route. Large amounts of isotope in niacinamide and some in nicotinamide mononucleotide (NMN) were also found indicating substantial NAD-glycohydrolase activity in this intestinal preparation. The products from [14C]nicotinamide also included the metabolites of nicotinic acid, due to deamidation of the substrate in the lumen when the exposure was prolonged. In short term studies the amide was absorbed rapidly by simple diffusion with little hydrolysis to nicotinic acid. The primary labeled form found in the perfusate when [14C]nicotinic acid was administered via the lumen for both recirculating and one pass perfusions was unchanged nicotinic acid. The primary forms found in the perfusate when the amide was given were both the amide and the acid for both one pass and for recirculating experiments. The rapid transport of nicotinamide from the lumen to the perfusate and the lack of 14C-metabolites of nicotinic acid in the intestinal tissue following intralumenal injection of [14C]nicotinamide in the living animal suggest that deamidation in the digestive tract is not a major fate of physiological quantities of niacinamide.

摘要

通过分析在血管内或肠腔内给予这些底物后不同时间间隔形成的(^{14}C)产物,研究了灌注大鼠肠道对([^{14}C])烟酸和([^{14}C])烟酰胺的代谢情况。当通过任何一种途径给予([^{14}C])烟酸时,普赖斯 - 汉德勒途径中的中间体都含有同位素。在烟酰胺中发现大量同位素,在烟酰胺单核苷酸(NMN)中也发现了一些同位素,这表明该肠道制剂中存在大量的NAD - 糖水解酶活性。由于长时间暴露时底物在肠腔内脱酰胺,([^{14}C])烟酰胺的产物还包括烟酸的代谢物。在短期研究中,酰胺通过简单扩散迅速吸收,很少水解为烟酸。当通过肠腔给予([^{14}C])烟酸进行再循环灌注和单次通过灌注时,灌注液中发现的主要标记形式是未变化的烟酸。当给予酰胺时,在单次通过和再循环实验的灌注液中发现的主要形式都是酰胺和酸。烟酰胺从肠腔快速转运到灌注液中,并且在活体动物肠腔内注射([^{14}C])烟酰胺后肠组织中缺乏烟酸的(^{14}C)代谢物,这表明消化道中的脱酰胺不是生理量烟酰胺的主要归宿。

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