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性别和年龄对热诱导的肝线粒体呼吸变化的影响。

Impact of Gender and Age on Hyperthermia-Induced Changes in Respiration of Liver Mitochondria.

机构信息

Department of Biochemistry, Faculty of Natural Sciences, Vytautas Magnus University, LT-44404 Kaunas, Lithuania.

出版信息

Medicina (Kaunas). 2018 Aug 31;54(4):62. doi: 10.3390/medicina54040062.

Abstract

: This study aimed to compare hyperthermia-induced changes in respiration and generation of reactive oxygen species (ROS) in liver mitochondria derived from animals of different gender and age. : The effects of hyperthermia (40⁻47 °C) on oxidation of different substrates and ROS production were estimated in mitochondria isolated from the liver of male and female rats of the 1⁻1.5, 3⁻4, or 6⁻7 months age. : Gender-dependent differences in response of respiration to hyperthermia were the highest at 3⁻4 months of age, less so at 6⁻7 months of age, and only minor at juvenile age. Mild hyperthermia (40⁻42 °C) stimulated pyruvate + malate oxidation in mitochondria of females, but inhibited in mitochondria of males in the 3⁻4 month age group. The resistance of mitochondrial membrane to hyperthermia was the highest at 3⁻4 month males, and the lowest in the 6⁻7 month age group. Inhibition of glutamate + malate oxidation by hyperthermia was caused by thermal inactivation of glutamate dehydrogenase. ROS generation at 37 °C was higher at 1⁻1.5 month of age, but the increase in ROS generation with rise in temperature in this age group was the smallest, and the strongest in 6⁻7 month old animals of both genders. : The response to hyperthermia varies during the first 6⁻7 months of life of experimental animals: stronger gender dependence is characteristic at 3⁻4 months of age, while mitochondria from 6⁻7 months animals are less resistant to hyperthermia.

摘要

本研究旨在比较来自不同性别和年龄动物的肝线粒体在高热诱导下呼吸和活性氧(ROS)产生的变化。研究估计了来自 1-1.5 个月、3-4 个月或 6-7 个月龄雄性和雌性大鼠肝线粒体中不同底物氧化和 ROS 产生对高热(40-47°C)的影响。高热对呼吸的影响在 3-4 个月龄时表现出最高的性别依赖性差异,在 6-7 个月龄时次之,在幼年期时差异最小。轻度高热(40-42°C)刺激了雌性大鼠线粒体中丙酮酸+苹果酸的氧化,但在 3-4 月龄雄性大鼠的线粒体中却抑制了氧化。在 3-4 月龄雄性大鼠中,线粒体膜对高热的抵抗力最高,而在 6-7 月龄组中抵抗力最低。谷氨酸+苹果酸氧化受高热抑制是由于谷氨酸脱氢酶的热失活所致。37°C 时 ROS 的生成在 1-1.5 个月龄时较高,但在该年龄组中,随着温度升高 ROS 生成的增加最小,而在两性的 6-7 月龄动物中最强。实验动物生命的前 6-7 个月对高热的反应不同:在 3-4 个月龄时,性别依赖性更强,而来自 6-7 个月龄动物的线粒体对高热的抵抗力较低。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d200/6174333/6b9efb32f16a/medicina-54-00062-g001.jpg

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