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23Na and 39K nuclear magnetic resonance studies of perfused rat hearts. Discrimination of intra- and extracellular ions using a shift reagent.

机译:灌注大鼠心脏的23Na和39K核磁共振研究。使用移位试剂区分细胞内和细胞外离子。

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摘要

High-resolution 23Na and 39K nuclear magnetic resonance (NMR) spectra of perfused, beating rat hearts have been obtained in the absence and presence of the downfield shift reagent Dy(TTHA)3- in the perfusing medium. Evidence indicates that Dy(TTHA)3- enters essentially all extracellular spaces but does not enter intracellular spaces. It can thus be used to discriminate the resonances of the ions in these spaces. Experiments supporting this conclusion include interventions that inhibit the Na+/K+ pump such as the inclusion of ouabain in and the exclusion of K+ from the perfusing medium. In each of these experiments, a peak corresponding to intracellular sodium increased in intensity. In the latter experiment, the increase was reversed when the concentration of K+ in the perfusing medium was returned to normal. When the concentration of Ca2+ in the perfusing medium was also returned to normal, the previously quiescent heart resumed beating. In the beating heart where the Na+/K+ pump was not inhibited, the intensity of the intracellular Na+ resonance was less than 20% of that expected. Although the data are more sparse, the NMR visibility of the intracellular K+ signal appears to be no more than 20%.
机译:在灌注介质中不存在和存在下场移位试剂Dy(TTHA)3-的情况下,获得了灌注的搏动的大鼠心脏的高分辨率23Na和39K核磁共振(NMR)光谱。有证据表明Dy(TTHA)3-基本上进入所有细胞外空间,但不进入细胞内空间。因此可以用来区分这些空间中离子的共振。支持该结论的实验包括抑制Na + / K +泵的干预措施,例如将哇巴因包含在其中以及将K +从灌注介质中排除。在这些实验的每一个中,对应于细胞内钠的峰强度增加。在后面的实验中,当灌注介质中的K +浓度恢复正常时,增加的作用被逆转。当灌注介质中的Ca2 +浓度也恢复正常时,先前静止的心脏恢复跳动。在不抑制Na + / K +泵的跳动心脏中,细胞内Na +共振的强度小于预期的20%。尽管数据更稀疏,但细胞内K +信号的NMR可见性似乎不超过20%。

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