Alleviating Effect of α-Lipoic Acid and Magnesium on Cadmium-Induced Inflammatory Processes, Oxidative Stress and Bone Metabolism Disorders in Wistar Rats.
Iwona Markiewicz-GorkaKrystyna PawlasAleksandra JaremkówLidia JanuszewskaPaweł PawłowskiNatalia PawlasPublished in: International journal of environmental research and public health (2019)
Cadmium exposure contributes to internal organ dysfunction and the development of chronic diseases. The aim of the study was to assess the alleviating effect of α-lipoic acid and/or magnesium on cadmium-induced oxidative stress and disorders in bone metabolism, kidney and liver function, and hematological and biochemical parameters changes. Male rats were exposed to cadmium (30 mg Cd/kg of feed) for three months. Some animals exposed to Cd were supplemented with magnesium (150 mg Mg/kg of feed) and/or with α-lipoic acid (100 mg/kg body weight, four times a week). Cd intake inhibited body weight gain and lowered hemoglobin concentration, whereas it increased the activities of liver enzymes, as well as the level of oxidative stress, CTX-1 (C-terminal telopeptide of type I collagen, bone resorption marker), and CRP (C-reactive protein, marker of inflammation); it decreased vitamin D3, GSH (reduced glutathione), and the serum urea nitrogen/creatinine index. Mg and/or α-lipoic acid supplementation increased the antioxidant potential, and partially normalized the studied biochemical parameters. The obtained results show that both magnesium and α-lipoic acid decrease oxidative stress and the level of inflammatory marker, as well as normalize bone metabolism and liver and kidney function. Combined intake of α-lipoic acid and magnesium results in reinforcement of the protective effect; especially, it increases antioxidant defense.
Keyphrases
- oxidative stress
- diabetic rats
- weight gain
- dna damage
- body weight
- bone mineral density
- ischemia reperfusion injury
- body mass index
- heavy metals
- bone loss
- randomized controlled trial
- soft tissue
- risk assessment
- clinical trial
- anti inflammatory
- hydrogen peroxide
- metabolic syndrome
- uric acid
- bone regeneration
- signaling pathway
- multidrug resistant
- innate immune