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δ22-熊去氧胆酸是大鼠体内给予熊去氧胆酸后的一种独特代谢产物,表明部分β-氧化是胆汁酸代谢的主要途径。

delta 22-Ursodeoxycholic acid, a unique metabolite of administered ursodeoxycholic acid in rats, indicating partial beta-oxidation as a major pathway for bile acid metabolism.

作者信息

Setchell K D, Yamashita H, Rodrigues C M, O'Connell N C, Kren B T, Steer C J

机构信息

Department of Pediatrics, Children's Hospital Medical Center, Cincinnati, Ohio 45229, USA.

出版信息

Biochemistry. 1995 Apr 4;34(13):4169-78. doi: 10.1021/bi00013a004.

Abstract

We describe for the first time the identification of 3 alpha, 7 beta-dihydroxy-5 beta-chol-22-en-24-oic acid (delta 22-UDCA) in the plasma, bile, intestinal contents, and liver tissue of Sprague-Dawley rats after intravenous and oral administration of ursodeoxycholic acid (UDCA). Infusion of [2,2,4,4-2H4]UDCA confirmed delta 22-UDCA to be a specific metabolite of UDCA. Definitive confirmation of this unique and major metabolite was established by liquid secondary ionization mass spectrometry and gas chromatography-mass spectrometry by comparison of the retention index and mass spectrum with an authentic standard of delta 22-UDCA. When rats were fed a diet containing 1.0% UDCA, high concentrations of delta 22-UDCA were found in the plasma (40.3 +/- 11.8 mumol/L) and liver tissue (300.9 +/- 64.2 nmol/g of tissue), and these represented 36% and 57%, respectively, of the UDCA concentration. In animals fed 0.4% and 1.0% UDCA, the mass of delta 22-UDCA in the jejunum was high (7.5 +/- 0.9 and 6.6 +/- 0.6 mg, respectively), accounting for 50-60% of the total UDCA, but diminished markedly along the intestine, accounting for < 3% of the total UDCA in the colon. Although delta 22-UDCA was not found in biological samples from control rats, delta 22-beta-muricholic and delta 22-omega-muricholic acids were normal constituents of plasma and intestinal contents and were major muricholate isomers in liver tissue and bile. Synthesis of delta 22-bile acids appears to be highly specific toward bile acids possessing a functional 7 beta-hydroxyl group. We presume that, in common with pathways for endogenous bile acid synthesis, partial side-chain oxidation of UDCA occurs in the peroxisome with formation of alpha/beta unsaturation; since UDCA has only a 5-carbon side chain, release of propionic or acetic acid is not possible, beta-oxidation proceeds no further, and delta 22-UDCA is formed. While the mechanism of formation and physiological significance of delta 22-bile acids remain to be established, our data indicate that partial beta-oxidation is a quantitatively important pathway for endogenous bile acid synthesis and for UDCA metabolism in this species.

摘要

我们首次描述了在给Sprague-Dawley大鼠静脉内和口服熊去氧胆酸(UDCA)后,在其血浆、胆汁、肠内容物和肝组织中鉴定出3α,7β-二羟基-5β-胆-22-烯-24-酸(δ22-UDCA)。输注[2,2,4,4-2H4]UDCA证实δ22-UDCA是UDCA的一种特异性代谢产物。通过液相二次电离质谱和气相色谱-质谱法,将保留指数和质谱与δ22-UDCA的 authentic标准品进行比较,从而对这种独特的主要代谢产物进行了明确的确认。当给大鼠喂食含1.0%UDCA的饮食时,在血浆(40.3±11.8 μmol/L)和肝组织(300.9±64.2 nmol/g组织)中发现了高浓度的δ22-UDCA,它们分别占UDCA浓度的36%和57%。在喂食0.4%和1.0%UDCA的动物中,空肠中δ22-UDCA的量很高(分别为7.5±0.9和6.6±0.6 mg),占总UDCA的50 - 60%,但沿肠道明显减少,在结肠中占总UDCA的不到3%。虽然在对照大鼠的生物样品中未发现δ22-UDCA,但δ22-β-鼠胆酸和δ22-ω-鼠胆酸是血浆和肠内容物的正常成分,并且是肝组织和胆汁中的主要鼠胆酸盐异构体。δ22-胆汁酸的合成似乎对具有功能性7β-羟基的胆汁酸具有高度特异性。我们推测,与内源性胆汁酸合成途径一样,UDCA的部分侧链氧化发生在过氧化物酶体中,形成α/β不饱和键;由于UDCA只有一个5碳侧链,不可能释放丙酸或乙酸,β-氧化不再进一步进行,从而形成δ22-UDCA。虽然δ22-胆汁酸的形成机制和生理意义仍有待确定,但我们的数据表明,部分β-氧化是该物种内源性胆汁酸合成和UDCA代谢的一个重要定量途径。

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