首页> 外文期刊>Journal of Lipid Research >Docosahexaenoic acid is both a product of and a precursor to tetracosahexaenoic acid in the rat[S]
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Docosahexaenoic acid is both a product of and a precursor to tetracosahexaenoic acid in the rat[S]

机译:二十二碳六烯酸均为大鼠中四碳甲酸的产物和前体[S]

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Tetracosahexaeoic acid (THA; 24:6n-3) is thought to be the immediate precursor of DHA in rodents; however, the relationship between THA and DHA metabolism has not been assessed in vivo. Here, we infused unesterified H-2(5)-THA and C-13(22)-DHA, at a steady state, into two groups of male Long-Evans rats and determined the synthesis-secretion kinetics, including daily synthesis-secretion rates of all 20-24 carbon n-3 PUFAs. We determined that the synthesis-secretion coefficient (a measure of the capacity to synthesize a given fatty acid) for the synthesis of DHA from plasma unesterified THA to be 134-fold higher than for THA from DHA. However, when considering the significantly higher endogenous plasma unesterified DHA pool, the daily synthesis-secretion rates were only 7-fold higher for DHA synthesis from THA (96.3 +/- 31.3 nmol/d) compared with that for THA synthesis from DHA (11.4 +/- 4.1 nmol/d). Furthermore, plasma unesterified THA was converted to DHA and secreted into the plasma at a 2.5-fold faster rate than remaining as THA itself (26.2 +/- 6.3 nmol/d), supporting THA's primary role as a precursor to DHA. In conclusion, using a 3 h infusion model in rats, we demonstrate for the first time in vivo that DHA is both a product and a precursor to THA.
机译:紫红素己酸(Tha; 24:6N-3)被认为是啮齿动物中DHA的直接前体;然而,在体内尚未评估THA和DHA代谢之间的关系。这里,我们将未经核化的H-2(5) - 液和C-13(22)-DHA稳定地注入两组雄性长官大鼠,并确定合成分泌动力学,包括日常合成分泌物所有20-24碳N-3 PUFA的速率。我们确定合成分泌系数(衡量合成给定脂肪酸的能力)从血浆从血浆中合成DHA至134倍,比来自DHA的THA高。然而,当考虑到明显更高的内源性血浆未经察觉的DHA池时,对于DHA(96.3 +/- 31.3 Nmol / D)的DHA合成而言,每日合成分泌率仅为7倍,与DHA合成(11.4 +/- 4.1 nmol / d)。此外,血浆未灭活的THA被转化为DHA,并以比剩余的速度为2.5倍的速度分泌到等离子体中(26.2 +/- 6.3 Nmol / D),支持Tha作为DHA前体的主要作用。总之,在大鼠中使用3 H输注模型,我们首次在体内演示DHA是一种产品和对THA的前体。

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