Abulmeaty Mahmoud M A, Ghneim Hazem K, Almajwal Ali Madi, Razak Suhail, AlSahli Abdulaziz S, Andrade Laborde Juan E, Ibrahim Ebtesam M, Aboul-Soud Mourad A M, Al-Sheikh Yazeed A
Department of Community Health Sciences, College of Applied Medical Sciences, King Saud University, Riyadh, KSA, Saudi Arabia.
Chair of Medical and Molecular Genetics, Department of Clinical Laboratory Sciences, College of Applied Medical Sciences, King Saud University, Riyadh, KSA, Saudi Arabia.
Cell Biochem Funct. 2023 Dec;41(8):1330-1342. doi: 10.1002/cbf.3867. Epub 2023 Oct 8.
Unpredictable chronic mild stress (UCMS) leads to variable metabolic effects. Oxidative stress (OS) of adipose tissue (AT) and mitochondrial energy homeostasis is little investigated. This work studied the effects of UCMS on OS and the antioxidant/redox status in AT and mitochondrial energy homeostasis in rats. Twenty-four male Wistar rats (180-220 g) were divided into two equal groups; the normal control (NC) group and the UCMS group which were exposed to various stresses for 28 days. An indirect calorimetry machine was used to measure volumes of respiratory gases (VO & VCO ), total energy expenditure (TEE), and food intake (FI). The AT depots were collected, weighed, and used for measuring activities and gene expression of key antioxidant enzymes (GPx1, SOD, CAT, GR, GCL, and GS), OS marker levels including superoxide anion (SA), peroxynitrite radical (PON), nitric oxide (NO), hydrogen peroxide (H O ), lipid peroxides (LPO), t-protein carbonyl content (PCC), and reduced/oxidized glutathione levels (GSH, GSSG). Additionally, AT mitochondrial fractions were used to determine the activities of the tricarboxylic acid cycle (TCA) cycle enzymes (CS, α-KGDH, ICDH, SDH, MDH), respiratory chain complexes I-III, II-III, IV, the nicotinamide coenzymes NAD , NADH, and ATP/ADP levels. Compared with the NC group, the UCMS group showed very significantly increased OS marker levels, lowered antioxidant enzyme activities and gene expression, as well as lowered TCA cycle and respiratory chain activity and NAD , NADH, and ATP levels (p < .001 for all comparisons). Besides, the UCMS group had lowered TEE and insignificant FI and weight gain. In conclusion, AT of the UCMS-subjected rats showed a state of disturbed redox balance linked to disrupted energy homeostasis producing augmentation of AT.
不可预测的慢性轻度应激(UCMS)会导致多种代谢效应。脂肪组织(AT)的氧化应激(OS)和线粒体能量稳态方面的研究较少。本研究探讨了UCMS对大鼠AT中OS、抗氧化/氧化还原状态以及线粒体能量稳态的影响。将24只雄性Wistar大鼠(180 - 220克)分为两组,每组数量相等,即正常对照组(NC组)和UCMS组,UCMS组接受各种应激刺激28天。使用间接测热仪测量呼吸气体体积(VO₂和VCO₂)、总能量消耗(TEE)和食物摄入量(FI)。收集AT储存库,称重,并用于测量关键抗氧化酶(GPx1、SOD、CAT、GR、GCL和GS)的活性和基因表达、OS标志物水平,包括超氧阴离子(SA)、过氧亚硝酸盐自由基(PON)、一氧化氮(NO)、过氧化氢(H₂O₂)、脂质过氧化物(LPO)、蛋白质羰基含量(PCC)以及还原型/氧化型谷胱甘肽水平(GSH、GSSG)。此外,使用AT线粒体组分来测定三羧酸循环(TCA)循环酶(CS、α-KGDH、ICDH、SDH、MDH)、呼吸链复合体I - III、II - III、IV、烟酰胺辅酶NAD⁺、NADH以及ATP/ADP水平。与NC组相比,UCMS组的OS标志物水平显著升高,抗氧化酶活性和基因表达降低,TCA循环和呼吸链活性以及NAD⁺、NADH和ATP水平也降低(所有比较p < 0.001)。此外,UCMS组的TEE降低,FI和体重增加不显著。总之,遭受UCMS的大鼠的AT表现出氧化还原平衡紊乱的状态,这与能量稳态破坏导致的AT增加有关。