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利用 CEST MRI 对比剂同时评估 pH 值和酶活性。

Simultaneous Evaluations of pH and Enzyme Activity with a CEST MRI Contrast Agent.

机构信息

Department of Chemistry and Biochemistry, University of Arizona, Tucson, Arizona 85721, United States.

Department of Cancer Systems Imaging, University of Texas MD Anderson Cancer Center, Houston, Texas 77054, United States.

出版信息

ACS Sens. 2021 Dec 24;6(12):4535-4544. doi: 10.1021/acssensors.1c02408. Epub 2021 Dec 2.

Abstract

The extracellular tumor microenvironment of many solid tumors has high acidosis and high protease activity. Simultaneously assessing both characteristics may improve diagnostic evaluations of aggressive tumors and the effects of anticancer treatments. Noninvasive imaging methods have previously been developed that measure extracellular pH or can detect enzyme activity using chemical exchange saturation transfer (CEST) magnetic resonance imaging (MRI). Herein, we developed a single-hybrid CEST agent that can simultaneously measure pH and evaluate protease activity using a combination of dual-power acidoCEST MRI and catalyCEST MRI. Our agent showed CEST signals at 9.2 ppm from a salicylic acid moiety and at 5.0 ppm from an aryl amide. The CEST signal at 9.2 ppm could be measured after selective saturation was applied at 1 and 4 μT, and these measurements could be used with a ratiometric analysis to determine pH. The CEST signal at 5.0 ppm from the aryl amide disappeared after the agent was treated with cathepsin B, while the CEST signal at 9.2 ppm remained, indicating that the agent could detect protease activity through the amide bond cleavage. Michaelis-Menten kinetics studies with catalyCEST MRI demonstrated that the binding affinity (as shown with the Michaelis constant ), the catalytic turnover rate (), and catalytic efficiency (/) were each higher for cathepsin B at lower pH. The rates measured with catalyCEST MRI were lower than the comparable rates measured with liquid chromatography-mass spectrometry (LC-MS), which reflected a limitation of inherently noisy and relatively insensitive CEST MRI analyses. Although this level of precision limited catalyCEST MRI to semiquantitative evaluations, these semiquantitative assessments of high and low protease activity still had value by demonstrating that high acidosis and high protease activity can be used as synergistic, multiparametric biomarkers.

摘要

许多实体瘤的细胞外肿瘤微环境具有酸中毒和高蛋白酶活性。同时评估这两个特征可能会提高对侵袭性肿瘤的诊断评估以及抗癌治疗的效果。以前已经开发了非侵入性成像方法,这些方法可以通过测量细胞外 pH 值或使用化学交换饱和传递(CEST)磁共振成像(MRI)来检测酶活性。在此,我们开发了一种单一杂交 CEST 试剂,该试剂可以通过双重功率 acidoCEST MRI 和 catalyCEST MRI 的组合来同时测量 pH 值并评估蛋白酶活性。我们的试剂在水杨酸部分显示出 9.2 ppm 的 CEST 信号,在芳酰胺处显示出 5.0 ppm 的 CEST 信号。在施加 1 和 4 μT 的选择性饱和后,可以测量到 9.2 ppm 的 CEST 信号,并且可以使用比率分析来确定 pH 值。在用组织蛋白酶 B 处理后,芳酰胺处的 5.0 ppm 的 CEST 信号消失,而 9.2 ppm 的 CEST 信号仍然存在,这表明该试剂可以通过酰胺键裂解检测蛋白酶活性。通过 catalyCEST MRI 进行的米氏动力学研究表明,在较低 pH 值下,与组织蛋白酶 B 的结合亲和力(表现为米氏常数)、催化周转率()和催化效率(/)均更高。用 catalyCEST MRI 测量的速率低于用液相色谱-质谱(LC-MS)测量的可比速率,这反映了固有噪声较大且相对不灵敏的 CEST MRI 分析的局限性。尽管这种精度水平限制了 catalyCEST MRI 进行半定量评估,但对高和低蛋白酶活性的这些半定量评估仍然具有价值,因为它们表明高酸中毒和高蛋白酶活性可以作为协同的、多参数生物标志物。

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本文引用的文献

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