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.
ACS Nano. 2021 Dec 28;15(12):20678-20688. doi: 10.1021/acsnano.1c10107. Epub 2021 Dec 6.
AcidoCEST MRI can measure the extracellular pH (pHe) of the tumor microenvironment in mouse models of human cancers and in patients who have cancer. However, chemical exchange saturation transfer (CEST) is an insensitive magnetic resonance imaging (MRI) contrast mechanism, requiring a high concentration of small-molecule agent to be delivered to the tumor. Herein, we developed a nanoscale CEST agent that can measure pH using acidoCEST MRI, which may decrease the requirement for high delivery concentrations of agent. We also developed a monomer agent for comparison to the polymer. After optimizing CEST experimental conditions, we determined that the polymer agent could be used during acidoCEST MRI studies at 125-fold and 488-fold lower concentration than the monomer agent and iopamidol, respectively. We also determined that both agents can measure pH with negligible dependence on temperature. However, pH measurements with both agents were dependent on concentration, which may be due to concentration-dependent changes in hydrogen bonding and/or steric hindrance. We performed acidoCEST MRI studies using the three agents to study a xenograft MDA-MB-231 model of mammary carcinoma. The tumor pHe measurements were 6.33 ± 0.12, 6.70 ± 0.15, and 6.85 ± 0.15 units with iopamidol, the monomer agent, and polymer agent, respectively. The higher pHe measurements with the monomer and polymer agents were attributed to the concentration dependence of these agents. This study demonstrated that nanoscale agents have merit for CEST MRI studies, but consideration should be given to the dependence of CEST contrast on the concentration of these agents.
AcidoCEST MRI 可测量人类癌症小鼠模型和癌症患者肿瘤微环境的细胞外 pH 值 (pHe)。然而,化学交换饱和传递 (CEST) 是一种不敏感的磁共振成像 (MRI) 对比机制,需要将高浓度的小分子试剂递送到肿瘤部位。在此,我们开发了一种纳米级的 CEST 试剂,可通过 acidoCEST MRI 测量 pH 值,这可能降低对高浓度试剂的需求。我们还开发了一种单体试剂来与聚合物进行比较。在优化 CEST 实验条件后,我们确定聚合物试剂可在 acidoCEST MRI 研究中以比单体试剂和碘帕醇分别低 125 倍和 488 倍的浓度使用。我们还确定这两种试剂都可以在 pH 值测量中忽略对温度的依赖。然而,两种试剂的 pH 值测量都依赖于浓度,这可能是由于氢键和/或空间位阻的浓度依赖性变化所致。我们使用三种试剂进行了 acidoCEST MRI 研究,以研究乳腺癌异种移植 MDA-MB-231 模型。肿瘤 pHe 值的测量结果分别为 6.33 ± 0.12、6.70 ± 0.15 和 6.85 ± 0.15,分别对应于碘帕醇、单体试剂和聚合物试剂。单体和聚合物试剂的较高 pHe 值是由于这些试剂的浓度依赖性所致。本研究表明,纳米级试剂在 CEST MRI 研究中具有一定的价值,但应考虑这些试剂的 CEST 对比度对其浓度的依赖性。