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在磁共振成像(MRI)系统中利用仲氢诱导极化克服超极化底物的挑战。

Overcoming the Challenges of Hyperpolarizing Substrates with Parahydrogen-Induced Polarization in an MRI System.

作者信息

de Maissin Henri, Ivantaev Vladislav, Mohiuddin Obaid, Berner Stephan, von Elverfeldt Dominik, Zaitsev Maxim, Kiselev Valerij, Schmidt Andreas B

机构信息

Division of Medical Physics, Department of Diagnostic and Interventional Radiology, University Medical Center Freiburg, Faculty of Medicine, University of Freiburg, Killianstrasse 5a, 79106, Freiburg, Germany.

German Cancer Consortium (DKTK), partner site Freiburg, German Cancer Research Center (DKFZ), Im Neuenheimer Feld 280, Heidelberg, 69120, Germany.

出版信息

Chemistry. 2025 Jan 9;31(2):e202402911. doi: 10.1002/chem.202402911. Epub 2024 Nov 19.

Abstract

Hyperpolarization of C nuclei in biomolecules and their administration as imaging agents enables in-vivo monitoring of metabolism. This approach has demonstrated potential for deriving imaging biomarkers for cancer detection, differentiation, and therapy efficacy assessment. The in situ generation of polarized substrates using a permanent addition of parahydrogen to an unsaturated precursor inside the bore of an MRI system used for subsequent imaging circumvents the need for a dedicated external polarizer. This approach reduces polarization loss associated with sample transfer, minimizes hardware requirements and cost, and results in reduced spatial requirements. However, performing INEPT-like pulsed sequences for heteronuclear spin-order transfer in the bore of an MRI system is challenged by poor uniformity of static and excitation magnetic field and molecular convection during the polarization transfer. Therefore, here we characterize these effects, implement a robust modification to the pulse sequence, and measure experimentally the polarization improvement upon modification of the sequence. After rigorous optimization of the parameters, we obtained a C polarization of 44.5 % for 50 mM of the 1-C site of ethyl acetate-d. Our parahydrogen-induced polarization approach enhances the accessibility to hyperpolarized MRI, circumventing the need for an external polarizer.

摘要

生物分子中碳核的超极化及其作为成像剂的应用能够对新陈代谢进行体内监测。这种方法已显示出在获取用于癌症检测、鉴别和治疗疗效评估的成像生物标志物方面的潜力。在用于后续成像的磁共振成像(MRI)系统磁体腔内,通过向不饱和前体永久添加仲氢原位生成极化底物,无需专用的外部极化器。这种方法减少了与样品转移相关的极化损失,将硬件要求和成本降至最低,并减小了空间需求。然而,在MRI系统磁体腔内执行类似INEPT的脉冲序列进行异核自旋序转移时,面临着静态和激发磁场均匀性差以及极化转移过程中分子对流的挑战。因此,我们在此对这些效应进行表征,对脉冲序列进行稳健改进,并通过实验测量序列改进后的极化增强情况。经过参数的严格优化,我们在50 mM乙酸乙酯 - d的1 - C位点获得了44.5%的碳极化。我们的仲氢诱导极化方法提高了超极化MRI的可及性,无需外部极化器。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/35dd/11724233/08885faf3420/CHEM-31-e202402911-g003.jpg

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