首页> 外文期刊>Magnetic resonance imaging: An International journal of basic research and clinical applications >Use of hyperpolarized [1-~(13)C]pyruvate and [2-~(13)C]pyruvate to probe the effects of the anticancer agent dichloroacetate on mitochondrial metabolism in vivo in the normal rat
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Use of hyperpolarized [1-~(13)C]pyruvate and [2-~(13)C]pyruvate to probe the effects of the anticancer agent dichloroacetate on mitochondrial metabolism in vivo in the normal rat

机译:超极化[1-〜(13)C]丙酮酸盐和[2-〜(13)C]丙酮酸盐在正常大鼠体内研究抗癌剂二氯乙酸盐对体内线粒体代谢的影响

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摘要

Development of hyperpolarized technology utilizing dynamic nuclear polarization has enabled the measurement of ~(13)C metabolism in vivo at very high signal-to-noise ratio (SNR). In vivo mitochondrial metabolism can, in principle, be monitored with pyruvate, which is catalyzed to acetyl-CoA via pyruvate dehydrogenase (PDH). The purpose of this work was to determine whether the compound sodium dichloroacetate (DCA) could aid the study of mitochondrial metabolism with hyperpolarized pyruvate. DCA stimulates PDH by inhibiting its inhibitor, pyruvate dehydrogenase kinase. In this work, hyperpolarized [1-~(13)C]pyruvate and [2-~(13)C]pyruvate were used to probe mitochondrial metabolism in normal rats. Increased conversion to bicarbonate (+181±69%, P=025) was measured when [1-~(13)C]pyruvate was injected after DCA administration, and increased glutamate (+74±23%, P=004), acetoacetate (+504±281%, P=009) and acetylcarnitine (+377±157%, P=003) were detected when [2-~(13)C]pyruvate was used.
机译:利用动态核极化的超极化技术的发展使得能够以很高的信噪比(SNR)在体内测量〜(13)C代谢。原则上,可以用丙酮酸监测体内线粒体的代谢,丙酮酸通过丙酮酸脱氢酶(PDH)催化为乙酰辅酶A。这项工作的目的是确定化合物二氯乙酸钠(DCA)是否可以辅助研究超极化丙酮酸的线粒体代谢。 DCA通过抑制其抑制剂丙酮酸脱氢酶激酶来刺激PDH。在这项工作中,使用超极化的[1-〜(13)C]丙酮酸和[2-〜(13)C]丙酮酸来探测正常大鼠的线粒体代谢。施用DCA后注射[1-〜(13)C]丙酮酸时,转化为碳酸氢盐的转化率增加(+ 181±69%,P = 025),而谷氨酸盐(+ 74±23%,P = 004)和乙酰乙酸增加。当使用[2-〜(13)C]丙酮酸盐时,检测到(+ 504±281%,P = 009)和乙酰肉碱(+ 377±157%,P = 003)。

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