Trace Elements and Electrolytes, Volume 41 (2024) - 1st & 2nd Quarter (30 - 38)

Impact of magnesium supplementation on glucose metabolism, oxidative stress, inflammatory response, and occurrence of complications in patients with type 2 diabetes and COVID-19 infection

Hadjer Saifi1, Rayane Saifi2, Messaouda Benabdelkader3, Yassine Mabrouk4, Mouldi Saidi4
1 Biogeochemistry of Desert Environments Laboratory, Scientific and Technical Research Center in Physicochemical Analysis, Department of Biological Sciences, Faculty of Natural and Life Sciences, Kasdi Merbah University, Ouargla, 2 Research Laboratory of Sciences and Environment: Bioresources, Geochemical-Physics, Legislation and Socio-Economic Development, Tamanrasset University, Tamanrasset, 3 Laboratory of Applied Microbiology, Setif University, Department of Environment and Agronomy, Mohamed Seddik Ben Yahia University, Jijel, Algeria, and 4 National Center of Nuclear Science and Technology (CNSTN), Laboratory of Biotechnology and Nuclear Technology, Sidi Thabet Technopark, Ariana, Tunisia

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DOI 10.5414/TE500071

Abstract

Objective: Magnesium (Mg) is involved in several vital processes. The objective of our research was to investigate, for the first time, its supplementation influence on glucose metabolism, oxidative stress, inflammatory response, and complication development in type 2 diabetes (T2D) patients with COVID-19.
Materials and methods: Our study was carried out on 140 T2D patients with COVID-19 systematically supplemented with zinc and vitamins C and D. They were divided equally into 2 groups (70 in each one): control group and group supplemented with Mg (375 mg/d) in addition to the systematic supplementation. Fasting blood samples were taken just after a positive COVID-19 diagnosis and after recovery to determine magnesemia, glycemia, oxidative stress, and inflammatory markers levels.
Results: Our results highlighted a significant improvement in fasting plasma Mg and glucose levels, a palpable recuperation in plasma total antioxidant status, a great reinforcement in the antioxidant activity of erythrocyte catalase and superoxide dismutase, and an explicit decline in oxidant status markers (plasma 8-hydroxydeoxyguanosine, erythrocyte malondialdehyde, and protein carbonyl), synchronized with interesting rectification in the immune performance by amending plasma tumor necrosis factor-α and interleukin-10 concentrations in the Mg-supplemented group compared to the non-Mg-supplemented group, which continued to deteriorate. COVID-19 recovery period and rates of diabetic ketoacidosis episodes, respiratory distress syndrome, and death in the Mg-supplemented group were significantly lower compared to those in non-Mg-supplemented group. However, Mg supplementation had no impact on erythrocyte glutathione peroxidase activity.
Conclusion: Mg supplementation in T2D patients with COVID-19 exerts insulin-mimetic, antioxidant, and immunomodulatory effects by minimizing the onset of severe complications.

Author Details

Authors

Departments

  • 1 Biogeochemistry of Desert Environments Laboratory, Scientific and Technical Research Center in Physicochemical Analysis, Department of Biological Sciences, Faculty of Natural and Life Sciences, Kasdi Merbah University, Ouargla,
  • 2 Research Laboratory of Sciences and Environment: Bioresources, Geochemical-Physics, Legislation and Socio-Economic Development, Tamanrasset University, Tamanrasset,
  • 3 Laboratory of Applied Microbiology, Setif University, Department of Environment and Agronomy, Mohamed Seddik Ben Yahia University, Jijel, Algeria, and
  • 4 National Center of Nuclear Science and Technology (CNSTN), Laboratory of Biotechnology and Nuclear Technology, Sidi Thabet Technopark, Ariana, Tunisia

Address

Dr. Hadjer Saifi
Department of Biological Sciences
Faculty of Natural and Life Sciences
Kasdi Merbah University
Ouargla, PB 511, 30000, Algeria
Email: [email protected]

Citation

Hadjer Saifi, Rayane Saifi, Messaouda Benabdelkader, Yassine Mabrouk, and Mouldi Saidi.Impact of magnesium supplementation on glucose metabolism, oxidative stress, inflammatory response, and occurrence of complications in patients with type 2 diabetes and COVID-19 infection
. 2024; 41: 30-38. doi: 10.5414/TE500071.

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