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Measuring Tumor Metabolism in Pediatric Diffuse Intrinsic Pontine Glioma Using Hyperpolarized Carbon-13 MR Metabolic Imaging

机译:使用超极化碳-13 MR代谢成像测量儿科弥漫性内在猪胶质瘤的肿瘤新陈代谢

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摘要

Objective. The purpose of this study was to demonstrate the feasibility of using hyperpolarized carbon-13 (13C) metabolic imaging with [1-13C]-labeled pyruvate for evaluating real-time in vivo metabolism of orthotopic diffuse intrinsic pontine glioma (DIPG) xenografts. Materials and Methods. 3D 13C magnetic resonance spectroscopic imaging (MRSI) data were acquired on a 3T scanner from 8 rats that had been implanted with human-derived DIPG cells in the brainstem and 5 healthy controls, following injection of 2.5 mL (100 mM) hyperpolarized [1-13C]-pyruvate. Results. Anatomical images from DIPG-bearing rats characteristically exhibited T2-hyperintensity throughout the cerebellum and pons that was not accompanied by contrast enhancement. Evaluation of real-time in vivo13C spectroscopic data revealed ratios of lactate-to-pyruvate (p<0.002), lactate-to-total carbon (p<0.002), and normalized lactate (p<0.002) that were significantly higher in T2 lesions harboring tumor relative to corresponding values of healthy normal brain. Elevated levels of lactate in lesions demonstrated a distinct metabolic profile that was associated with infiltrative, viable tumor recapitulating the histopathology of pediatric DIPG. Conclusions. Results from this study characterized pyruvate and lactate metabolism in orthotopic DIPG xenografts and suggest that hyperpolarized 13C MRSI may serve as a noninvasive imaging technique for in vivo monitoring of biochemical processes in patients with DIPG.
机译:客观的。本研究的目的是证明使用超极化碳-13(13C)与[1-13C] - 标记的丙酮酸的代谢成像进行了可行性,用于评估原位弥漫性内在猪胶质瘤(DIPG)异种移植物的体内代谢的实时。材料和方法。 3D 13C磁共振光谱成像(MRSI)在3T扫描仪中获取来自脑干中的人衍生的DIPG细胞的3T扫描仪,然后在注射2.5ml(100mM)超极化后[1- 13C] - 吡合物。结果。来自抗衰落大鼠的解剖图像在整个小脑中表现出在整个小脑中表现出的T2高度,并且没有伴随对比增强的PON。在Vivo13C光谱数据中的实时评估显示乳酸 - - 丙酮酸的比例(P <0.002),乳酸盐 - 总碳(P <0.002),并标准化乳酸(P <0.002),在T2病变中显着更高相对于健康正常大脑的相应值患肿瘤。病变中乳酸水平升高证明了与浸润,活肿瘤相关的不同的代谢型,重新承诺儿科DIPG的组织病理学。结论。该研究的结果表征了原位DIPG异种移植物中的丙酮酸和乳酸乳酸代谢,并表明超极化的13C MRSI可以用作对DIPG患者生物化学过程进行体内监测的非侵入性成像技术。

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