Experimental studies concerning the possible involvement of adenosine in maintaining the hydroelectrolytic balance.

S M Slătinean, M Costuleanu, I Mândreci, G Petrescu
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Abstract

The study focused on the effects of intracerebroventricular (i.c.v.) administration of adenosine (10(-7)-10(-5) M) on water metabolism and some electrolytes in adults rats. The i.c.v. administered adenosine decreases both spontaneous and angiotensin II (Ang II) induced ingestion of sodium chloride solution (9/1000). Urinary release was differently influenced. Thus, while the released urinary volume increased in the first 4 hours after adenosine injection, it was not significantly modified on successive administration of adenosine and Ang II. Adenosine decreases the urinary releases of Na+ and K+ and dramatically reduces only Ang II-induced natriuresis. Finally, we can conclude that neural chains involved in the control of uptake and release of water and some ions, include neurons and/or purinergic interneurons.

关于腺苷可能参与维持水电解质平衡的实验研究。
本研究主要研究了脑室灌注腺苷(10(-7)-10(-5)M)对成年大鼠水代谢和部分电解质的影响。静脉滴注腺苷可降低氯化钠溶液自发摄入和血管紧张素II (Ang II)诱导摄入(9/1000)。尿释放受到不同程度的影响。因此,虽然在注射腺苷后的前4小时内尿量释放量增加,但连续给药腺苷和Ang II后尿量没有明显改变。腺苷减少尿中Na+和K+的释放,并显著减少Ang ii诱导的尿钠。最后,我们可以得出结论,参与控制水和某些离子的摄取和释放的神经链包括神经元和/或嘌呤能中间神经元。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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