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首页> 外文期刊>American Journal of Physiology >Acetogenesis does not replace ketogenesis in fasting piglets infused with hexanoate.
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Acetogenesis does not replace ketogenesis in fasting piglets infused with hexanoate.

机译:在用己酸注入的空腹仔猪中,生乙酸不能代替生酮。

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摘要

The current studies were performed to better understand the physiological relevance of acetate in the poorly ketogenic piglet and to determine if endogenous acetogenesis rises with increased mitochondrial fatty acid beta-oxidation, analogous to ketogenesis. Plasma acetate concentration values in newborn, fasted, or suckled piglets (230-343 microM) were at least 10-fold higher than the ketone bodies, a pattern opposite to that in 24- to 48-h suckled rats (77-175 microM). Employing continuous infusion techniques with sodium [3H]acetate tracer in fasting approximately 40-h-old piglets, acetate rate of appearance (Ra) was found to be 34 +/- 4 micromol . min-1 . kg body wt-1. This basal Ra was double that observed in animals coinfused with sodium [1-14C]hexanoate (P < 0.001), despite active oxidation of the latter as determined by 14CO2 production. Active acetogenesis in vivo and relatively abundant acetate in piglet blood are consistent with the hypothesis that acetate plays an important physiological role in piglets. However, the negative impact of hexanoate oxidation upon acetate Ra and the lack of significant changes in circulating acetate in newborn, suckled, and fasted piglets draws into question the extent of analogy between acetogenesis and ketogenesis in vivo.
机译:进行当前的研究是为了更好地了解生酮能力差的仔猪中乙酸的生理相关性,并确定内源产乙酸是否随着线粒体脂肪酸β-氧化的增加而增加,类似于生酮作用。新生,禁食或哺乳仔猪(230-343 microM)中的血浆乙酸盐浓度至少比酮体高10倍,与24至48 h哺乳大鼠(77-175 microM)中的相反。在禁食约40小时的仔猪中使用[3H]乙酸钠连续注入技术,发现醋酸盐出现率(Ra)为34 +/- 4 micromol。 min-1。体重kg-1。尽管通过14CO2产生确定了后者的活性氧化,但该基础Ra是在与[1-14C]己酸钠混合的动物中观察到的两倍(P <0.001)。体内活跃的产乙酸作用和仔猪血液中相对丰富的乙酸盐与以下假设相一致:醋酸盐在仔猪中起着重要的生理作用。但是,己酸氧化对乙酸根Ra的负面影响以及新生,哺乳和禁食仔猪体内循环乙酸缺乏明显变化,使体内产乙酸与生酮之间的类比程度受到质疑。

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