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钆-二乙三胺五乙酸二聚体作为软骨降解的一种测量指标。

Gd-DTPA2- as a measure of cartilage degradation.

作者信息

Bashir A, Gray M L, Burstein D

机构信息

Department of Electrical Engineering and Computer Science, Massachusetts Institute of Technology, Cambridge, USA.

出版信息

Magn Reson Med. 1996 Nov;36(5):665-73. doi: 10.1002/mrm.1910360504.

Abstract

Glycosaminoglycans (GAGs) are the main source of tissue fixed charge density (FCD) in cartilage, and are lost early in arthritic diseases. We tested the hypothesis that, like Na+, the charged contrast agent Gd-DTPA2- (and hence proton T1) could be used to measure tissue FCD and hence GAG concentration. NMR spectroscopy studies of cartilage explants demonstrated that there was a strong correlation (r > 0.96) between proton T1 in the presence of Gd-DTPA2- and tissue sodium and GAG concentrations. An ideal one-compartment electrochemical (Donnan) equilibrium model was examined as a means of quantifying FCD from Gd-DTPA2- concentration, yielding a value 50% less but linearly correlated with the validated method of quantifying FCD from Na+. These data could be used as the basis of an empirical model with which to quantify FCD from Gd-DTPA2- concentration, or a more sophisticated physical model could be developed. Spatial distributions of FCD were easily observed in T1-weighted MRI studies of trypsin and interleukin-1 induced cartilage degradation, with good histological correlation. Therefore, equilibration of the tissue in Gd-DTPA2- gives us the opportunity to directly image (through T1 weighting) the concentration of GAG, a major and critically important macromolecule in cartilage. Pilot clinical studies demonstrated Gd-DTPA2- penetration into cartilage, suggesting that this technique is clinically feasible.

摘要

糖胺聚糖(GAGs)是软骨组织固定电荷密度(FCD)的主要来源,且在关节炎疾病早期会流失。我们验证了这样一个假设:与钠离子类似,带电荷的造影剂钆喷替酸葡甲胺二价阴离子(Gd-DTPA2-,进而影响质子T1)可用于测量组织FCD,从而测定GAG浓度。对软骨外植体的核磁共振波谱研究表明,在存在Gd-DTPA2-的情况下,质子T1与组织钠和GAG浓度之间存在强相关性(r>0.96)。研究了一个理想的单室电化学(唐南)平衡模型,以此作为从Gd-DTPA2-浓度定量FCD的方法,其得出的值比通过钠离子定量FCD的经验证方法少50%,但呈线性相关。这些数据可用作基于Gd-DTPA2-浓度定量FCD的经验模型的基础,或者可以开发更复杂的物理模型。在胰蛋白酶和白细胞介素-1诱导的软骨降解的T1加权磁共振成像研究中,很容易观察到FCD的空间分布,且与组织学有良好的相关性。因此,让组织与Gd-DTPA2-平衡,使我们有机会通过T1加权直接成像软骨中主要且至关重要的大分子GAG的浓度。初步临床研究表明Gd-DTPA2-可渗透进入软骨,这表明该技术在临床上是可行的。

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