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实验肿瘤模型中的1H-NMR弛豫时间与水分区室化

1H-NMR relaxation times and water compartmentalization in experimental tumor models.

作者信息

Braunschweiger P G, Schiffer L M, Furmanski P

机构信息

AMC Cancer Research Center, Lakewood, Colorado 80214.

出版信息

Magn Reson Imaging. 1986;4(4):335-42. doi: 10.1016/0730-725x(86)91043-x.

DOI:10.1016/0730-725x(86)91043-x
PMID:3669948
Abstract

The present studies were conducted with RIF-1, M5076 and Panc02 subcutaneous tumor models to assess the relationship between tissue-free water compartmentalization and observed tissue T1 and T2 changes at 10 MHz. Observed T1 was shown to correlate directly with total extracellular water and interstitial water volumes. T1 and T2 were also inversely related to intracellular water volumes. T1 and T2 decreases after dexamethasone treatment were, however, most closely correlated with changes in tumor extracellular water and not changes in cell or total water volumes. Studies to assess Gd-DTPA-dimeg dose dependent T1 and T2 modification in model serum protein solutions indicated that although the Gd concentration that reduced T2 by 50% was about 2.5 fold greater than that required to reduce T1 equally, the of the concentration dependent T1 and T2 modifications were similar. In studies with tumor models, the injected dose of Gd-DTPA-dimeg that reduced T1 by 50% was inversely correlated with tumor extracellular water volumes. The slopes for dose dependent T1 modification in all tumors were similar and similar to that observed for model protein solutions. Gd-DTPA-dimeg had a different effect on observed T2 values for the 3 tumor models. Exponential slopes were about twice that observed for T2 modification of serum protein solutions, and Gd-DTPA-dimeg doses that reduced observed tumor T2 ranged from 9 to 50 times that necessary to similarly reduce T1. The results from these studies indicate that the observed T1, for these tumors, was dominated by relaxation of water protons in interstitial water but that the observed T2 was most strongly influenced by proton relaxation in water compartments that were unavailable to the Gd labeled probe.

摘要

本研究使用RIF-1、M5076和Panc02皮下肿瘤模型进行,以评估无组织水的分区与在10MHz下观察到的组织T1和T2变化之间的关系。观察到的T1与细胞外总水量和间质水体积直接相关。T1和T2也与细胞内水体积呈负相关。然而,地塞米松治疗后T1和T2的降低与肿瘤细胞外水的变化最为密切相关,而与细胞或总水量的变化无关。评估钆喷酸葡胺剂量依赖性T1和T2修饰的模型血清蛋白溶液研究表明,虽然使T2降低50%的钆浓度比使T1同等降低所需的浓度大约高2.5倍,但浓度依赖性T1和T2修饰的曲线相似。在肿瘤模型研究中,使T1降低50%的钆喷酸葡胺注射剂量与肿瘤细胞外水体积呈负相关。所有肿瘤中剂量依赖性T1修饰的斜率相似,且与模型蛋白溶液中观察到的斜率相似。钆喷酸葡胺对3种肿瘤模型观察到的T2值有不同影响。指数斜率约为血清蛋白溶液T2修饰观察值的两倍,使观察到的肿瘤T2降低的钆喷酸葡胺剂量为使T1同样降低所需剂量的9至50倍。这些研究结果表明,对于这些肿瘤,观察到的T1主要由间质水中水质子的弛豫决定,但观察到的T2受钆标记探针无法进入的水隔室中质子弛豫的影响最大。

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