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灌注雪貂心脏的高时间分辨率31P核磁共振研究。

High-time-resolution 31P NMR studies of the perfused ferret heart.

作者信息

Morris P G, Allen D G, Orchard C H

出版信息

Adv Myocardiol. 1985;5:27-37. doi: 10.1007/978-1-4757-1287-2_3.

Abstract

A cell is described that has enabled isolated Langendorff-perfused ferret hearts to be studied in a Bruker WM200 widebore superconducting nuclear magnetic resonance (NMR) spectrometer. Left ventricular pressure was monitored with a latex balloon catheter, and the hearts were paced with a stimulator triggered from the spectrometer's central computer, enabling gated studies to be performed. Suitable radiofrequency filtering for the pacing leads is described. Phosphorus (31P) NMR was used to determine internal pH and the concentration of phosphorylated metabolites under resting conditions. The perfusion rate is shown to affect the phosphocreatine/ATP ratio at low flow rates, but the removal of phosphate from the perfusate is shown not to affect metabolite levels or the internal pH. The time resolution of the method is assessed and its potential for monitoring transient effects illustrated by studies of the effects of acetylcholine and cyanide-induced anoxia. The cardiac gated 31P NMR experiment is discussed and four spectra, corresponding to mid- and end systole and mid- and end diastolic are presented. No effects of cycling of high-energy phosphates are evident in these results.

摘要

本文描述了一种细胞,它能使分离的经Langendorff灌注的雪貂心脏在布鲁克WM200宽孔径超导核磁共振(NMR)光谱仪中进行研究。用乳胶气球导管监测左心室压力,并用由光谱仪中央计算机触发的刺激器对心脏进行起搏,从而能够进行门控研究。文中描述了对起搏导线进行合适的射频滤波方法。采用磷(31P)核磁共振技术测定静息状态下的细胞内pH值和磷酸化代谢物浓度。结果表明,在低流速下灌注速率会影响磷酸肌酸/三磷酸腺苷(ATP)比值,但灌注液中磷酸盐的去除对代谢物水平或细胞内pH值无影响。评估了该方法的时间分辨率,并通过乙酰胆碱和氰化物诱导的缺氧效应研究说明了其监测瞬态效应的潜力。讨论了心脏门控31P核磁共振实验,并给出了对应于心室收缩中期和末期以及舒张中期和末期的四个光谱。这些结果中未发现高能磷酸盐循环的影响。

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