MR-Based Methods for pH Measurement in Brain Tumors: Current Status and Clinical Potential

Xiao-Fang Cheng, R. Wu
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引用次数: 5

Abstract

Alteration in tissue pH is an indicator of many pathological processes.In tumors,the pH gradient exists between the intracellular(pHi) and extracellular(pHe) compartments.pHe is usually lower,and pHi could be higher or unchanging compared with normal tissue,which can be correlated with prognosis and response to treatment.In recent years,non-invasive MR-based methods have been developed to assess tissue pH in brain tumors.In addition to protons(1H) and phosphorus(31P),pH measurement approaches have been applied with other NMR nuclei such as fluorine(19F) and carbon(13C).By using hyperpolarized 13C-labelled bicarbonate,the average tumor interstitial pH was found significantly lower than the surrounding tissue in mouse tumor model.Gd(3+)-based pH sensors and chemical exchange-dependent saturation transfer(CEST) and paramagnetic(PARACEST) agents are useful for further delineation of brain tumors.This article primarily focuses on the measurement of pH in brain tumors with MR-based methods and relevant clinical potential.
基于核磁共振的脑肿瘤pH测量方法:现状和临床潜力
组织pH值的改变是许多病理过程的一个指标。在肿瘤中,pH梯度存在于细胞内(pHi)和细胞外(pHe)区室之间。与正常组织相比,pHe通常较低,pHi可能较高或不变,这与预后和治疗反应有关。近年来,基于非侵入性核磁共振的方法已经发展到评估脑肿瘤组织pH值。除了质子(1H)和磷(31P)外,pH测量方法还应用于其他核磁共振核,如氟(19F)和碳(13C)。通过超极化13c标记的碳酸氢盐,发现小鼠肿瘤模型中肿瘤间质平均pH值明显低于周围组织。基于gd(3+)的pH传感器和化学交换依赖性饱和转移(CEST)和亲磁性(PARACEST)试剂可用于进一步描绘脑肿瘤。本文主要就脑肿瘤pH值的磁共振测量方法及其临床应用前景作一综述。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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