Alexandr Alexandrovich Basov, Аnna Anatolyevna Elkina, Andrei Alexandrovich Samkov, Nikita Nikolaevich Volchenko, Arcadii Victorovich Moiseev, Liliya Viacheslavovna Fedulova, Mikhail Gennadievich Baryshev, Stepan Sergeevich Dzhimak
Kuban State Medical University, Krasnodar, Russian Federation, Russia.
Kuban State University, Krasnodar, Russian Federation, Russia.
Iran Biomed J. 2019 Mar;23(2):129-41. doi: 10.29252/.23.2.129. Epub 2018 Sep 17.
This study aimed to evaluate the reaction of organism of laboratory animals on deuterium-depleted drinking diet. To assess the cell energy metabolism, the effect of a liquid medium with different deuterium contents on isolated liver mitochondria of random bred rats and Wistar rats was studied.
This experimental study on the effect of deuterium-depleted drinking water (DDW) on 16-week-old male Wistar rats lasted for four weeks. Energy metabolism of mitochondria was examined through the production of hydrogen peroxide using an Amplex® Red Hydrogen Peroxide/Peroxidase Assay Kit.
Modification of isotope (deuterium-protium [D/H]) composition of rats’ blood and organ tissues with DDW (-705‰), introduced into rats’ diet within four weeks, led to the formation of isotope D/H gradient between blood plasma and organ tissues and affected isotope D/H exchange reactions on the adaptive processes. The isolated liver mitochondria from the random bred rats consumed DDW presented a maximum increase in H2O2 production during the incubation in DDW medium. This increased level of H2O2 production was higher in the isolated liver mitochondria of the rats consuming natural deuterium content drinking water (-24‰).
The obtained results indicate the possibility of nutritional correction of isotope D/H metabolism in blood by means of products with modified isotope composition, as well as the prospects of using isotope exchange reactions in case of imbalance in function of the body's defense systems in different generations of animals.
本研究旨在评估实验动物机体对低氘饮用水的反应。为评估细胞能量代谢,研究了不同氘含量的液体培养基对随机繁殖大鼠和Wistar大鼠分离的肝脏线粒体的影响。
本实验研究低氘饮用水(DDW)对16周龄雄性Wistar大鼠的作用,持续4周。使用Amplex® Red过氧化氢/过氧化物酶检测试剂盒通过过氧化氢的产生来检测线粒体的能量代谢。
在四周内将DDW(-705‰)引入大鼠饮食中,改变大鼠血液和器官组织的同位素(氘 - 氢[D/H])组成,导致血浆和器官组织之间形成同位素D/H梯度,并影响适应性过程中的同位素D/H交换反应。在DDW培养基中孵育期间,来自饮用DDW的随机繁殖大鼠的分离肝脏线粒体的过氧化氢产生量最大增加。饮用天然氘含量饮用水(-24‰)的大鼠分离肝脏线粒体中过氧化氢产生的增加水平更高。
获得的结果表明,通过具有改变同位素组成的产品对血液中同位素D/H代谢进行营养校正的可能性,以及在不同代动物的机体防御系统功能失衡的情况下使用同位素交换反应的前景。