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首页> 外文期刊>Molecular genetics and metabolism >Metabolism of D-(1-(13)C)fructose, D-(2-(13)C)fructose, and D-(6-(13)C)fructose in rat hepatocytes incubated in the presence of H(2)O or D(2)O.
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Metabolism of D-(1-(13)C)fructose, D-(2-(13)C)fructose, and D-(6-(13)C)fructose in rat hepatocytes incubated in the presence of H(2)O or D(2)O.

机译:在H(2)存在下培养的大鼠肝细胞中D-(1-(13)C)果糖,D-(2-(13)C)果糖和D-(6-(13)C)果糖的代谢O或D(2)O。

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摘要

Isolated hepatocytes from fed rats were exposed for 120 min to D-[1-(13)C]fructose, D-[2-(13)C]fructose, or D-[6-(13)C]fructose in the presence of H(2)O or D(2)O. The identification and quantification of (13)C-enriched metabolites (D-glucose, L-lactate) in the incubation medium and the measurement of their deuterated isotopomers indicated that the ketohexose was phosphorylated predominantly at the intervention of fructokinase and that the majority of the D-glyceraldehyde molecules generated from d-fructose 1-phosphate were further metabolized, e.g., after phosphorylation to D-glyceraldehyde 3-phosphate. It is proposed that the present procedure may help to further characterize the regulation of D-fructose metabolism in both hepatocytes and other cell types.
机译:在存在下,将取食的大鼠的分离的肝细胞暴露于D- [1-(13)C]果糖,D- [2-(13)C]果糖或D- [6-(13)C]果糖中H(2)O或D(2)O。在培养液中对富含(13)C的代谢物(D-葡萄糖,L-乳酸盐)进行鉴定和定量以及对它们的氘代同位素的测量结果表明,酮己糖主要在果糖激酶的干预下被磷酸化。由d-果糖1-磷酸产生的D-甘油醛分子被进一步代谢,例如在磷酸化为D-甘油醛3-磷酸后。提出本程序可有助于进一步表征肝细胞和其他细胞类型中D-果糖代谢的调节。

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