Mechanism Underlying Increase of the Serum Magnesium Concentration Observed Following Treatment with Sodium-Glucose Cotransporter 2 Inhibitors
- 1 Department of Medicine, Nerima General Hospital, Tokyo, Japan
- 2 Public Interest Incorporated Foundation, Tokyo Healthcare Foundation, Institute for Healthcare Quality Improvement, Tokyo, Japan
- 3 Public Interest Incorporated Foundation, Tokyo Healthcare Foundation, Institute for Healthcare Quality Improvement, Tokyo, Japan
- 4 Department of Medicine, Nerima General Hospital, Tokyo, Japan
Abstract
Aim : The EMPA-REG OUTCOME study reported that the sodium-glucose cotransporter 2 inhibitor (SGLT2-i) suppressed cardiovascular (CV) events in patients with type 2 diabetes; we recently suggested that increase of the serum magnesium (Mg) by SGLT2-i’s can, in part, explain this reduction. The objective of this study was to elucidate the mechanism underlying the elevation of the serum Mg level induced by treatment with SGLT2-i’s. Methods : We analyzed the data of 37 patients with type 2 diabetes who underwent clinical evaluation and laboratory assessment at baseline and the end of 3 months. To investigate the relationship between the changes in the serum Mg concentrations during 3 months’ treatment (ΔMg) and other variables, we carried out simple linear regression analysis and multiple linear regression analysis. Results : Three months’ treatment with the SGLT2-i resulted in a significant improvement of the body weight (BW), BMI, hemoglobin A1c (HbA1c), and fasting plasma glucose levels. The serum Mg increased significantly. Simple linear regression analysis revealed an association between the ΔMg and the serum triglyceride, serum Mg at baseline, change of the BW (ΔBW), and change of the HbA1c. Multiple linear regression analysis revealed a significant association between the ΔMg and the serum Mg level at the baseline (r = - 0.55, P < 0.001) and the ΔBW (r = -0.34, P < 0.05). Conclusion : Our study revealed that a lower serum Mg level at the baseline and BW reduction were significantly associated with an increase in the serum Mg following 3 months’ treatment with SGLT2-i’s.
- Zinman, B., Wanner, C., Lachin, J.M., Fitchett, D., Bluhmki, E., Hantel, S., Mattheus, M., Devins, T., Johansen, O.E., Woerle, H.J., Broedl, U.C. and Inzucchi, S.E., EMPA-REG OUTCOME Investigators (2015) Empagliflozin, Cardiovascular Outcomes, and Mortality in Type 2 Diabetes. The New England Journal of Medicine, 373, 2117-2128. https://doi.org/10.1056/NEJMoa1504720
- Ferrannini, E., Mark, M. and Mayoux, E. (2016) CV Protection in the EMPA-REG OUTCOME Trial: A “Thrifty Substrate” Hypothesis. Diabetes Care, 39, 1108-1114, https://doi.org/10.2337/dc16-0330
- List, J.F., Woo, V., Morales, E., Tang, W. and Fiedorek, F.T. (2009) Sodium-Glucose Cotransport Inhibition with Dapagliflozin in Type 2 Diabetes. Diabetes Care, 32, 650-657. https://doi.org/10.2337/dc08-1863
- Tang, H., Zhang, X., Zhang, J., Li, Y., Del Gobbo, L.C., Zhai, S. and Song, Y. (2016) Elevated Serum Magnesium Associated with SGLT2 Inhibitor Use in Type 2 Diabetes Patients: Ametaanalysis of Randomised Controlled Trials. Diabetologia, 59, 2546-2551. https://doi.org/10.1007/s00125-016-4101-6
- Yanagawa, T. (2017) Is an Increase in Serum Magnesium One of the Causes of Cardiovascular Events Reduction in the EMPA-REG OUTCOME Study? Journal of Clinical Medicine Research, 9, 449-450. https://doi.org/10.14740/jocmr3014w
- Del Gobbo, L.C., Imamura, F., Wu, J.H., de Oliveira Otto, M.C., Chiuve, S.E. and Mozaffarian, D. (2013) Circulating and Dietary Magnesium and Risk of Cardiovascular Disease: A Systematic Review and Meta-Analysis of Prospective Studies. The American Journal of Clinical Nutrition, 98, 160-173. https://doi.org/10.3945/ajcn.112.053132
- Zhang, X., Li, Y., Del Gobbo, L.C., Rosanoff, A., Wang, J., Zhang, W. and Song, Y. (2016) Effects of Magnesium Supplementation on Blood Pressure: A Meta-Analysis of Randomized Double-Blind Placebo-Controlled Trials. Hypertension, 68, 324-333. https://doi.org/10.1161/HYPERTENSIONAHA.116.07664
- Grober, U., Schmidt, J. and Kisters, K. (2015) Magnesium in Prevention and Therapy. Nutrients, 7, 8199-8226. https://doi.org/10.3390/nu7095388
- Seino, Y., Nanjo, K., Tajima, N., Kadowaki, T., Kashiwagi, A., Araki, E., Ito, C., Inagaki, N., Iwamoto, Y., Kasuga, M., Hanafusa, T., Haneda, M. and Ueki, K. (2010) Report of the Committee on the Classification and Diagnostic Criteria of Diabetes Mellitus. Journal of Diabetes Investigation, 19, 212-228.
- Khan, A.M., Lubitz, S.A., Sullivan, L.M., Sun, J.X., Levy, D. and Vasan, R.S. (2013) Low Serum Magnesium and the Development of Atrial Fibrillation in the Community: The Framingham Heart Study. Circulation, 127, 33-38. https://doi.org/10.1161/CIRCULATIONAHA.111.082511