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Estimation of the hydrogen concentration in rat tissue using an airtight tube following the administration of hydrogen via various routes

机译:通过各种途径施用氢气后使用气密管估算大鼠组织中的氢气浓度

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摘要

Hydrogen exerts beneficial effects in disease animal models of ischemia-reperfusion injury as well as inflammatory and neurological disease. Additionally, molecular hydrogen is useful for various novel medical and therapeutic applications in the clinical setting. In the present study, the hydrogen concentration in rat blood and tissue was estimated. Wistar rats were orally administered hydrogen super-rich water (HSRW), intraperitoneal and intravenous administration of hydrogen super-rich saline (HSRS), and inhalation of hydrogen gas. A new method for determining the hydrogen concentration was then applied using high-quality sensor gas chromatography, after which the specimen was prepared via tissue homogenization in airtight tubes. This method allowed for the sensitive and stable determination of the hydrogen concentration. The hydrogen concentration reached a peak at 5 minutes after oral and intraperitoneal administration, compared to 1 minute after intravenous administration. Following inhalation of hydrogen gas, the hydrogen concentration was found to be significantly increased at 30 minutes and maintained the same level thereafter. These results demonstrate that accurately determining the hydrogen concentration in rat blood and organ tissue is very useful and important for the application of various novel medical and therapeutic therapies using molecular hydrogen.
机译:氢在缺血-再灌注损伤的疾病动物模型以及炎性和神经疾病中发挥有益作用。另外,分子氢可用于临床环境中的各种新型医学和治疗应用。在本研究中,估计了大鼠血液和组织中的氢浓度。对Wistar大鼠进行口服富氢水(HSRW),腹腔和静脉内富氢盐水(HSRS)静脉内给药,以及吸入氢气。然后使用高质量的传感器气相色谱法应用一种测定氢浓度的新方法,然后通过在气密管中进行组织均质化来制备标本。该方法可以灵敏稳定地测定氢浓度。口服和腹膜内给药后5分钟的氢浓度达到峰值,而静脉内给药后1分钟的氢浓度达到峰值。吸入氢气后,发现氢气浓度在30分钟时显着增加,此后保持相同水平。这些结果表明,准确测定大鼠血液和器官组织中的氢浓度对于使用分子氢的各种新型药物和治疗方法的应用非常有用且重要。

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