125
Views
0
CrossRef citations to date
0
Altmetric
Research Article

Neuroprotective effects of magnesium against stress induced by hydrogen peroxide in Wistar rat

, , , ORCID Icon, , & show all
Pages 538-543 | Received 23 May 2023, Accepted 04 Aug 2023, Published online: 27 Aug 2023

References

  • Abad, C., et al., 2015. Magnesium sulfate affords protection against oxidative damage during severe preeclampsia. Placenta, 36 (2), 179–185.
  • Abumaria, N., et al., 2011. Effects of elevation of brain magnesium on fear conditioning, fear extinction, and synaptic plasticity in the infralimbic prefrontal cortex and lateral amygdala. The journal of neuroscience : the official journal of the society for neuroscience, 31 (42), 14871–14881.
  • Akarachkova, E.S., et al., 2013. The role of magnesium deficiency in the formation of clinical manifestation of stress in women. Pediatric pharmacology, 10 (2), 57., p
  • Angelova, P.R., and Abramov, A.Y., 2018. Role of mitochondrial ROS in the brain: from physiology to neurodegeneration. FEBS letters, 592 (5), 692–702.
  • Botturi, A., et al., 2020. The Role and the Effect of Magnesium in Mental Disorders: A Systematic Review. Nutrients, 12 (6), 1661.
  • Bouayed, J., 2011. Relationship between oxidative stress and anxiety: emerging role of antioxidants within therapeutic or preventive approaches. In: V. Kalinin, ed. Anxiety disorder. InTech Open.
  • Bouayed, J., and Soulimani, R., 2019. Evidence that hydrogen peroxide, a component of oxidative stress, induces high-anxiety-related behaviour in mice. Behavioural brain research, 359, 292–297.
  • Boyle, N.B., Lawton, C., and Dye, L., 2017. The Effects of Magnesium Supplementation on Subjective Anxiety and Stress-A Systematic Review. Nutrients, 9 (5), 429.
  • Bradford, M.M., 1976. A rapid and sensitive method for the quantitation of microgram quantities of protein utilizing the principle of protein-dye binding. Analytical biochemistry, 72, 248–254.
  • Dingeon, B., Ferry, J.P., and Roullet, A., 1975. [Automatic assay of blood sugar by Trinder’s method]. Annales de biologie clinique, 33 (1), 3–13.
  • Eby, G.A., and Eby, K.L., 2006. Rapid recovery from major depression using magnesium treatment. Medical hypotheses, 67 (2), 362–370.
  • Fox, C., Ramsoomair, D., and Carter, C., 2001. Magnesium: its proven and potential clinical significance. Southern medical journal, 94 (12), 1195–1201.
  • Fromm, L., et al., 2004. Magnesium attenuates post-traumatic depression/anxiety following diffuse traumatic brain injury in rats. Journal of the American college of nutrition, 23 (5), 529S–533S.
  • Garcia, L.A., et al., 1998. Magnesium reduces free radicals in an in vivo coronary occlusion-reperfusion model. Journal of the American college of cardiology, 32 (2), 536–539.
  • Godoy, L.D., et al., 2018. A Comprehensive Overview on Stress Neurobiology: Basic Concepts and Clinical Implications. Frontiers in behavioral neuroscience, 12, 127.
  • Grover, D., et al., 2009. Hydrogen peroxide stimulates activity and alters behavior in Drosophila melanogaster. PloS one, 4 (10), e7580.
  • Guesmi, F., Bellamine, H., and Landoulsi, A., 2018. Hydrogen peroxide-induced oxidative stress, acetylcholinesterase inhibition, and mediated brain injury attenuated by Thymus algeriensis. Applied physiology, nutrition, and metabolism = physiologie appliquee, nutrition et metabolisme, 43 (12), 1275–1281.
  • Hans, C.P., Chaudhary, D.P., and Bansal, D.D., 2003. Effect of magnesium supplementation on oxidative stress in alloxanic diabetic rats. Magnesium research, 16 (1), 13–19.
  • Hovatta, I., Juhila, J., and Donner, J., 2010. Oxidative stress in anxiety and comorbid disorders. Neuroscience research, 68 (4), 261–275.
  • Ikeda, M., et al., 2004. Supplementation of antioxidants prevents oxidative stress during a deep saturation dive. The tohoku journal of experimental medicine, 203 (4), 353–357.
  • Islam, M.S., et al., 2016. Enhanced dynamic instability of microtubules in a ROS free inert environment. Biophysical chemistry, 211, 1–8.
  • Jamilian, M., Sabzevar, N.K., and Asemi, Z., 2019. The Effect of Magnesium and Vitamin E Co-Supplementation on Glycemic Control and Markers of Cardio-Metabolic Risk in Women with Polycystic Ovary Syndrome: A Randomized, Double-Blind, Placebo-Controlled Trial. Hormone and metabolic research = hormon- und stoffwechselforschung = hormones et metabolisme, 51 (2), 100–105.
  • Konrad, M., Schlingmann, K.P., and Gudermann, T., 2004. Insights into the molecular nature of magnesium homeostasis. American journal of physiology. Renal physiology, 286 (4), F599–605.
  • Korte, M., et al., 1998. A role for BDNF in the late-phase of hippocampal long-term potentiation. Neuropharmacology, 37 (4-5), 553–559.
  • Kour, K., and Bani, S., 2011. Chicoric acid regulates behavioral and biochemical alterations induced by chronic stress in experimental Swiss albino mice. Pharmacology, biochemistry, and behavior, 99 (3), 342–348.
  • Misra, H.P., and Fridovich, I., 1972. The Role of Superoxide Anion in the Autoxidation of Epinephrine and a Simple Assay for Superoxide Dismutase. Journal of biological chemistry, 247 (10), 3170–3175.
  • Mohammadi, H., et al., 2011. Benefit of nanocarrier of magnetic magnesium in rat malathion-induced toxicity and cardiac failure using non-invasive monitoring of electrocardiogram and blood pressure. Toxicology and industrial health, 27 (5), 417–429.
  • Mohammadi, H., et al., 2020. Magnesium Sulfate Attenuates Lethality and Oxidative Damage Induced by Different Models of Hypoxia in Mice. BioMed research international, 2020, 2624734.
  • Niehaus, W.G., and Samuelsson, B., 1968. Formation of Malonaldehyde from Phospholipid Arachidonate during Microsomal Lipid Peroxidation. European journal of biochemistry, 6 (1), 126–130.
  • Othman, H., et al., 2017. Effects of repeated restraint stress and WiFi signal exposure on behavior and oxidative stress in rats. Metabolic brain disease, 32 (5), 1459–1469.
  • Packard, A.E.B., Egan, A.E., and Ulrich-Lai, Y.M., 2016. HPA axis- Interaction with Behavioral Systems. Comprehensive physiology, 6 (4), 1897–1934.
  • Patricia Gaete, H., 2016. Hypothalamus-pituitary-adrenal (HPA) axis, chronic stress, hair cortisol, metabolic syndrome and mindfulness. Integrative molecular medicine, 3 (5), S504–S505.
  • Pilchova, I., et al., 2017. The Involvement of Mg2+ in Regulation of Cellular and Mitochondrial Functions. Oxidative medicine and cellular longevity, 2017, 6797460.
  • Pochwat, B., et al., 2015. Antidepressant-like activity of magnesium in the olfactory bulbectomy model is associated with the AMPA/BDNF pathway. Psychopharmacology, 232 (2), 355–367.
  • Poleszak, E., 2008. Benzodiazepine/GABA(A) receptors are involved in magnesium-induced anxiolytic-like behavior in mice. Pharmacological reports: PR, 60 (4), 483–489.
  • Poleszak, E., et al., 2004. Antidepressant- and anxiolytic-like activity of magnesium in mice. Pharmacology, biochemistry, and behavior, 78 (1), 7–12.
  • Sadir, S., et al., 2019. Neurobehavioral and biochemical effects of magnesium chloride (MgCl2), magnesium sulphate (MgSO4) and magnesium-L-threonate (MgT) supplementation in rats: A dose dependent comparative study. Pakistan journal of pharmaceutical sciences, 32 (1(Supplementary), 277–283.
  • Sedlak, J., and Lindsay, R.H., 1968. Estimation of total, protein-bound, and nonprotein sulfhydryl groups in tissue with Ellman’s reagent. Analytical biochemistry, 25 (1), 192–205.
  • Sinha, A.K., 1972. Colorimetric assay of catalase. Analytical biochemistry, 47 (2), 389–394.
  • Smith, D.H., et al., 1993. Magnesium and ketamine attenuate cognitive dysfunction following experimental brain injury. Neuroscience letters, 157 (2), 211–214.
  • Sorce, S., and Krause, K.-H., 2009. NOX enzymes in the central nervous system: from signaling to disease. Antioxidants & redox signaling, 11 (10), 2481–2504.
  • Spandou, E., et al., 2007. Neuroprotective effect of long-term MgSO4 administration after cerebral hypoxia-ischemia in newborn rats is related to the severity of brain damage. Reproductive sciences (thousand oaks, calif.), 14 (7), 667–677.
  • Uttara, B., et al., 2009. Oxidative stress and neurodegenerative diseases: a review of upstream and downstream antioxidant therapeutic options. Current neuropharmacology, 7 (1), 65–74.
  • Veal, E.A., Day, A.M., and Morgan, B.A., 2007. Hydrogen peroxide sensing and signaling. Molecular cell, 26 (1), 1–14.
  • Walf, A.A., and Frye, C.A., 2007. The use of the elevated plus maze as an assay of anxiety-related behavior in rodents. Nature protocols, 2 (2), 322–328.
  • Ward, J.F., et al., 1987. Radiation and hydrogen peroxide induced free radical damage to DNA. The british journal of cancer. Supplement, 8, 105–112.
  • Yamanaka, R., Shindo, Y., and Oka, K., 2019. Magnesium Is a Key Player in Neuronal Maturation and Neuropathology. International journal of molecular sciences, 20 (14), 3439.
  • Zheltova, A.A., et al., 2016. Magnesium deficiency and oxidative stress: an update. BioMedicine, 6 (4), 20.

Reprints and Corporate Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

To request a reprint or corporate permissions for this article, please click on the relevant link below:

Academic Permissions

Please note: Selecting permissions does not provide access to the full text of the article, please see our help page How do I view content?

Obtain permissions instantly via Rightslink by clicking on the button below:

If you are unable to obtain permissions via Rightslink, please complete and submit this Permissions form. For more information, please visit our Permissions help page.