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[通过生理和代谢成像预测癌症治疗反应]

[Prediction of Cancer Treatment Response by Physiologic and Metabolic Imaging].

作者信息

Matsumoto Shingo

机构信息

Graduate School of Information Science and Technology, Hokkaido University.

出版信息

Yakugaku Zasshi. 2016;136(8):1101-5. doi: 10.1248/yakushi.15-00234-5.

Abstract

Tumors develop a characteristic microenvironment depending on their specific genetic mutations. The direct products of mutant genes and the resulting microenvironmental changes provoke metabolic changes in the tumor. If noninvasive imaging techniques including magnetic resonance imaging (MRI) could be used to detect such microenvironmental and metabolic changes in tumors, we might be able to provide more effective treatment strategies for individual tumors in patients. In addition to conventional imaging techniques, this review article introduces quantitative 3D oxygen imaging using electron paramagnetic resonance imaging (EPRI) and hyperpolarized (13)C metabolic MRI and shows how these imaging techniques can help to monitor and predict tumor response to various treatments including radiation therapy and antiangiogenic agents. Hyperpolarization is a method for enhancing the MRI signal of (13)C in a molecule by 10000-fold, which makes it possible to trace the metabolic reaction of externally administered molecules in the body noninvasively. For example, a precise cancer diagnosis can be made in a 3-min scan with a [1-(13)C] pyruvate as a metabolic tracer. The first clinical trial on the use of hyperpolarized (13)C MRI in patients with prostate cancer was conducted at the University of California San Francisco (UCSF), and we plan to start the second clinical trial on this technique in the near future.

摘要

肿瘤会根据其特定的基因突变形成独特的微环境。突变基因的直接产物以及由此产生的微环境变化会引发肿瘤的代谢改变。如果包括磁共振成像(MRI)在内的非侵入性成像技术能够用于检测肿瘤中的此类微环境和代谢变化,那么我们或许就能为患者的个体肿瘤提供更有效的治疗策略。除了传统成像技术外,本文综述还介绍了利用电子顺磁共振成像(EPRI)和超极化(13)C代谢MRI进行的定量三维氧成像,并展示了这些成像技术如何有助于监测和预测肿瘤对包括放射治疗和抗血管生成药物在内的各种治疗的反应。超极化是一种将分子中(13)C的MRI信号增强10000倍的方法,这使得在体内非侵入性地追踪外部给予分子的代谢反应成为可能。例如,以[1-(13)C]丙酮酸作为代谢示踪剂,在3分钟的扫描中就能做出精确的癌症诊断。加利福尼亚大学旧金山分校(UCSF)开展了首例关于在前列腺癌患者中使用超极化(13)C MRI的临床试验,我们计划在不久的将来启动该技术的第二项临床试验。

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