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Direct dynamic measurement of intracellular and extracellular lactate in small-volume cell suspensions with C-13 hyperpolarised NMR

机译:使用C-13超极化NMR直接动态测量小体积细胞悬液中的细胞内和细胞外乳酸

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Hyperpolarised (HP) C-13 NMR allows enzymatic activity to be probed in real time in live biological systems. The use of in vitro models gives excellent control of the cellular environment, crucial in the understanding of enzyme kinetics. The increased conversion of pyruvate to lactate in cancer cells has been well studied with HP C-13 NMR. Unfortunately, the equally important metabolic step of lactate transport out of the cell remains undetected, because intracellular and extracellular lactate are measured as a single resonance. Furthermore, typical experiments must be performed using tens of millions of cells, a large amount which can lead to a costly and sometimes highly challenging growing procedure. We present a relatively simple set-up that requires as little as two million cells with the spectral resolution to separate the intracellular and extracellular lactate resonances. The set-up is tested with suspensions of prostate cancer carcinoma cells (PC3) in combination with HP [1-C-13]pyruvate. We obtained reproducible pyruvate to lactate label fluxes of 1.2 and 1.7 nmol/s per million cells at 2.5 and 5.0 mM pyruvate concentrations. The existence of a 3-Hz chemical shift difference between intracellular and extracellular lactate enabled us to determine the lactate transport rates in PC3. We deduced a lactate export rate of 0.3 s(-1) and observed a decrease in lactate transport on addition of the lactate transport inhibitor -cyano-4-hydroxycinnamic acid. Copyright (c) 2015 John Wiley & Sons, Ltd.
机译:超极化(HP)C-13 NMR可以在活生物系统中实时探测酶活性。使用体外模型可以很好地控制细胞环境,这对于理解酶动力学至关重要。 HP C-13 NMR已充分研究了癌细胞中丙酮酸转化为乳酸的增加。不幸的是,由于细胞内和细胞外乳酸是单次共振测量,因此乳酸从细胞外转运的同等重要的代谢步骤仍未被检测到。此外,必须使用数以千万计的细胞进行典型的实验,大量细胞可能导致昂贵且有时极富挑战性的生长过程。我们提出了一个相对简单的设置,它需要少至两百万个具有光谱分辨率的细胞才能分离细胞内和细胞外乳酸共振。用前列腺癌细胞(PC3)和HP [1-C-13]丙酮酸盐的混悬液测试设置。我们在2.5和5.0 mM丙酮酸浓度下获得了每百万个细胞1.2和1.7 nmol / s的可再生丙酮酸至乳酸标记通量。细胞内和细胞外乳酸之间存在3 Hz化学位移差异,这使我们能够确定PC3中的乳酸转运速率。我们推导了0.3 s(-1)的乳酸盐出口速度,并观察到添加乳酸盐运输抑制剂-cyano-4-hydroxycinnamicamic acid时乳酸盐运输的减少。版权所有(c)2015 John Wiley&Sons,Ltd.

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