Narinyan Lilia, Ayrapetyan Sinerik
a UNESCO Chair - Life Sciences International Postgraduate Educational Center , Yerevan , Armenia.
Electromagn Biol Med. 2017;36(2):182-191. doi: 10.1080/15368378.2016.1241803. Epub 2016 Oct 24.
Previously, we have suggested that cell hydration is a universal and extra-sensitive sensor for the structural changes of cell aqua medium caused by the impact of weak chemical and physical factors. The aim of present work is to elucidate the nature of the metabolic messenger through which physiological solution (PS) treated by non-thermal (NT) microwaves (MW) could modulate heart muscle hydration of rats. For this purpose, the effects of NT MW-treated PS on heart muscle hydration, [H]-ouabain binding with cell membrane, Ca uptake and intracellular cyclic nucleotides contents in vivo and in vitro experiments were studied. It is shown that intraperitoneal injections of both Sham-treated PS and NT MW-treated PS elevate heart muscle hydration. However, the effect of NT MW-treated PS on muscle hydration is more pronounced than the effect of Sham-treated PS. In vitro experiments NT MW-treated PS has dehydration effect on muscle, which is not changed by decreasing Na gradients on membrane. Intraperitoneal injection of Sham- and NT MW-treated PS containing Ca have similar dehydration effect on muscle, while NT MW-treated PS has activation effect on Na/Ca exchange in reverse mode. The intraperitoneal injection of NT MW-treated PS depresses [H]-ouabain binding with its high-affinity membrane receptors, elevates intracellular cAMP and decreases cGMP contents. Based on the obtained data, it is suggested that cAMP-dependent signaling system serves as a primary metabolic target for NT MW effect on heart muscle hydration.
此前,我们曾提出细胞水合作用是一种通用且超灵敏的传感器,可感知由微弱化学和物理因素影响导致的细胞水介质结构变化。本研究的目的是阐明代谢信使的本质,通过该信使,经非热(NT)微波(MW)处理的生理溶液(PS)能够调节大鼠心肌的水合作用。为此,我们在体内和体外实验中研究了经NT MW处理的PS对心肌水合作用、[H]-哇巴因与细胞膜结合、钙摄取以及细胞内环核苷酸含量的影响。结果表明,腹腔注射假处理的PS和经NT MW处理的PS均可提高心肌水合作用。然而,经NT MW处理的PS对肌肉水合作用的影响比假处理的PS更为显著。在体外实验中,经NT MW处理的PS对肌肉有脱水作用,且这种作用不会因膜上钠梯度的降低而改变。腹腔注射含钙的假处理PS和经NT MW处理的PS对肌肉具有相似的脱水作用,而经NT MW处理的PS对反向模式下的钠/钙交换具有激活作用。腹腔注射经NT MW处理的PS可降低[H]-哇巴因与其高亲和力膜受体的结合,提高细胞内cAMP含量并降低cGMP含量。基于所获得的数据,我们认为cAMP依赖性信号系统是NT MW对心肌水合作用影响的主要代谢靶点。