Department of Molecular Biotechnology and Health Sciences, University of Torino, Torino, Italy.
Istituto di Biostrutture e Bioimmagini (IBB), Consiglio Nazionale delle Ricerche, via Nizza 52, Torino, Italy.
Magn Reson Chem. 2019 Aug;57(10):845-851. doi: 10.1002/mrc.4837. Epub 2019 Feb 19.
H Fast Field Cycling NMR (FFC-NMR) relaxometry is proposed as a powerful method to investigate tumour stroma in vivo upon the administration of a Gd-based contrast agent. To perform this study, an FFC-NMR equipment endowed with a wide bore magnet was used for the acquisition of Nuclear Magnetic Resonance Dispersion profiles on healthy muscle and tumour tissue in living mice. At magnetic field strengths < of ca. 1 MHz, the differences in the relaxation rates of the intra and extracellular compartment become of the same order of magnitude of the exchange rate across the cellular membranes. Under this condition, the water exchange rate between the two compartments yields to a biexponential magnetization recovery that can be analysed by fitting the experimental data with the two-Site eXchange (2SX) model. Using this model, it was possible to obtain, for the two compartments, both relaxation properties and water kinetic constants for water exchange across cell membranes. The method allowed us to determine the effect of the "matrix" on the water proton relaxation times and, in turn, to get some insights of the composition of this compartment, till now, largely unknown.
H 快速场循环 NMR(FFC-NMR)弛豫测量法被提议作为一种强大的方法,用于在给予基于 Gd 的造影剂后在体内研究肿瘤基质。为了进行这项研究,使用配备宽孔径磁铁的 FFC-NMR 设备在活体小鼠的健康肌肉和肿瘤组织上采集磁共振弥散谱。在磁场强度<约 1 MHz 的情况下,细胞内外腔室的弛豫率差异变得与跨细胞膜的交换率处于同一数量级。在这种情况下,两个腔室之间的水交换率导致双指数磁化恢复,可通过将实验数据拟合到双位点交换(2SX)模型来分析。使用该模型,我们可以为两个腔室获得弛豫特性和跨细胞膜水交换的水动力学常数。该方法允许我们确定“基质”对水质子弛豫时间的影响,并反过来深入了解这个腔室的组成,迄今为止,这个腔室的组成在很大程度上是未知的。