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通过体内核磁共振波谱法测量大鼠胶质瘤中的乳酸周转率。

Lactate turnover in rat glioma measured by in vivo nuclear magnetic resonance spectroscopy.

作者信息

Terpstra M, Gruetter R, High W B, Mescher M, DelaBarre L, Merkle H, Garwood M

机构信息

Department of Radiology, University of Minnesota Medical School, Minneapolis 55455, USA.

出版信息

Cancer Res. 1998 Nov 15;58(22):5083-8.

PMID:9823316
Abstract

Elevated tissue lactate concentrations typically found in tumors can be measured by in vivo nuclear magnetic resonance (NMR) spectroscopy. In this study, lactate turnover in rat C6 glioma was determined from in vivo 1H NMR measurements of [3-13C]lactate buildup during steady-state hyperglycemia with [1-13C]glucose. With this tumor model, a narrow range of values was observed for the first-order rate constant that describes lactate efflux, k2 = 0.043 +/- 0.007 (n = 12) SD min-1. For individual animals, the standard error in k2 was small (< 18%), which indicated that the NMR data fit the kinetic model well. Lactate measurements before and after infusing [1-13C]glucose showed that the majority of the tumor lactate pool was metabolically active. Signals from 13C-labeled glutamate in tumors were at least 10-fold smaller than the [3-13C]lactate signal, whereas spectra of the contralateral hemispheres revealed the expected labeling of [4-13C]glutamate, as well as [2-13C] and [3-13C]glutamate, which indicates that label cycled through the tricarboxylic acid cycle in the brain tissue. Lack of significant 13C labeling of glutamate was consistent with low respiratory metabolism in this glioma. It is concluded that lactate in rat C6 glioma is actively turning over and that the kinetics of lactate efflux can be quantified noninvasively by 1H NMR detection of 13C label. This noninvasive NMR approach may offer a valuable tool to help evaluate tumor growth and metabolic responsiveness to therapies.

摘要

肿瘤中通常升高的组织乳酸浓度可通过体内核磁共振(NMR)光谱法进行测量。在本研究中,通过在稳态高血糖期间用[1-¹³C]葡萄糖对[3-¹³C]乳酸积累进行体内¹H NMR测量,确定了大鼠C6胶质瘤中的乳酸周转率。在这个肿瘤模型中,观察到描述乳酸流出的一级速率常数k2的值范围很窄,k2 = 0.043±0.007(n = 12)SD min⁻¹。对于个体动物,k2的标准误差很小(<18%),这表明NMR数据与动力学模型拟合良好。注入[1-¹³C]葡萄糖前后的乳酸测量表明,肿瘤乳酸池的大部分具有代谢活性。肿瘤中¹³C标记的谷氨酸信号至少比[3-¹³C]乳酸信号小10倍,而对侧半球的光谱显示了预期的[4-¹³C]谷氨酸以及[2-¹³C]和[3-¹³C]谷氨酸标记,这表明标记物在脑组织中通过三羧酸循环循环。谷氨酸缺乏明显的¹³C标记与该胶质瘤中低呼吸代谢一致。得出的结论是,大鼠C6胶质瘤中的乳酸正在积极周转,并且可以通过¹H NMR检测¹³C标记物来无创定量乳酸流出的动力学。这种无创NMR方法可能提供一种有价值的工具,以帮助评估肿瘤生长和对治疗的代谢反应。

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