吸入一氧化氮条件下红细胞能量代谢的实验研究

A. K. Martusevich, L. Kovaleva
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引用次数: 0

摘要

摘要 一氧化氮具有多种生物效应,包括血管活性、参与神经传递和细胞间通信等。这些作用与一氧化氮的内源性释放有关,但对外源性施用这种物质的影响还没有详细研究。尤其是吸入一氧化氮对全身的影响还不太清楚。这项工作的目的是研究一氧化氮吸入对健康大鼠血液能量和氧化代谢的一些参数的影响。Wistar 大鼠被随机分为两组:对照组(无任何操作;n=10)和吸入含一氧化氮气流(20 ppm)的主要组(n=10)。对大鼠血液样本中的乳酸脱氢酶和乳酸水平进行了估计。此外,我们还计算了一些能量代谢积分系数,如底物供应系数和能量反应平衡系数。我们的实验证明,吸入低剂量一氧化氮(20 ppm)10 天,可提高健康大鼠机体的适应潜力。这些积极影响之一与激活能量代谢的某些成分有关。首先,它是通过刺激乳酸脱氢酶(包括其红细胞池)的催化活性实现的。观察到的新陈代谢效应为纠正与缺氧、氧化应激和能量缺乏有关的疾病提供了依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
EXPERIMENTAL STUDY OF ERYTHROCYTE ENERGY METABOLISM UNDER INHALATIONS OF NITRIC OXIDE
Abstract Biological effects of nitric oxide are multiply, including vasoactive activity, participation in neurotransmission and intercellular communication etc. These effects are associated with endogenous releasing of nitric oxide, but influence of exogenous administration of this substance does not study in details. In particular, systemic action of nitric oxide inhalations is not so clear. The aim of this work was the investigation of nitric oxide inhalations action on some parameters of energy and oxidative metabolism of healthy rat blood. Wistar rats were randomly divided into two groups: control group (without any manipulations; n=10) and main group (n=10) with inhalations by nitric oxide-containing gas flow (20 ppm). Lactate dehydrogenase and lactate level were estimated in rat blood samples. In addition, we calculated a number of integral coefficients of energy metabolism, such as substrate provision coefficient and coefficient of energy reactions balance. Our experiments demonstrate that 10-days course of inhalations of low nitric oxide doses (20 ppm) increases the adaptive potential of healthy rats’ organism. One of these positive effects is associated with activation of some components of energy metabolism. First of all, it realized through stimulation of catalytic activity of lactate dehydrogenase, including its erythrocyte pool. Observed metabolic effect provides the basis for pathogenic correction of diseases, associated with hypoxia, oxidative stress and energy deficiency.
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