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通过二维位移相关和J-分辨核磁共振波谱法对大鼠脑1H谱中的共振进行归属

Assignment of resonance in the 1H spectrum of rat brain by two-dimensional shift correlated and J-resolved NMR spectroscopy.

作者信息

Behar K L, Ogino T

机构信息

Department of Neurology, Yale University School of Medicine, New Haven, Connecticut 06510.

出版信息

Magn Reson Med. 1991 Feb;17(2):285-303. doi: 10.1002/mrm.1910170202.

Abstract

Two-dimensional shift-correlated (COSY) and J-resolved NMR spectroscopy was used to identify and assign resonance in the aliphatic region (0.8 to 4.5 ppm) of the 1H spectrum of acid extracts and tissue of rat brain. The chemical shift and spin-spin coupling constants of several resonances, which could not be resolved in one-dimensional spectra of tissue, were determined. These properties, together with the appropriate multiplet structure and scalar coupling patterns observed in 2D J-resolved and COSY spectra, were used to assign the resonances of lactate, threonine, alanine gamma-amino butyrate, N-acetyl aspartate, aspartate, glutamate, glutamine, taurine, and myo-inositol. The single peak observed at 1.33 ppm in the 1D 1H spectrum of excised brain tissue, which is generally assigned to lactate, was shown instead to consist of two overlapping peaks in 2D COSY contour plots. The intensity of both resonances increased considerably after death. The second resonance was assigned to threonine and the assignment was confirmed by ion-exchange chromatography. Several cross peaks were identified in 2D COSY spectra of intact brain tissue that were not present in similar spectra of the acid extract. The nonmetabolite resonances were assigned to macromolecules. Analysis of 2D COSY contour plots in conjunction with 1D spectra revealed that the total creatinine (creatinine + phosphocreatine) resonance at 3.0 ppm was overlapped by both GABA and macromolecules. This macromolecule resonance was present in a 2D COSY spectrum of the rat brain obtained in situ with a surface coil following cardiac arrest, indicating that its presence in the 2D spectrum of excised brain tissue did not arise from tissue disruption.

摘要

二维位移相关(COSY)和J分辨核磁共振光谱用于识别和归属大鼠脑酸提取物及脑组织1H谱脂肪族区域(0.8至4.5 ppm)的共振峰。测定了组织一维谱中无法分辨的几个共振峰的化学位移和自旋-自旋耦合常数。这些性质,连同在二维J分辨和COSY谱中观察到的适当多重峰结构和标量耦合模式,用于归属乳酸、苏氨酸、丙氨酸、γ-氨基丁酸、N-乙酰天冬氨酸、天冬氨酸、谷氨酸、谷氨酰胺、牛磺酸和肌醇的共振峰。在切除脑组织的一维1H谱中1.33 ppm处观察到的单峰,通常被归属为乳酸,但在二维COSY等高线图中显示由两个重叠峰组成。死后这两个共振峰的强度均显著增加。第二个共振峰被归属为苏氨酸,且该归属通过离子交换色谱法得以证实。在完整脑组织的二维COSY谱中鉴定出了几个酸提取物类似谱中不存在的交叉峰。非代谢物共振峰被归属为大分子。结合一维谱分析二维COSY等高线图发现,3.0 ppm处的总肌酸酐(肌酸酐+磷酸肌酸)共振峰与GABA和大分子重叠。在心脏骤停后用表面线圈原位获得的大鼠脑二维COSY谱中存在这种大分子共振峰,表明其在切除脑组织二维谱中的存在并非源于组织破坏。

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