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SGLT2 inhibitors and cardioprotection: a matter of debate and multiple hypotheses
Theodosios D Filippatos1, Angelos Liontos2, Ioanna Papakitsou1
1a Department of Internal Medicine, School of Medicine , University of Crete, University Hospital of Heraklion , Heraklion , Greece.
Abstract:
Sodium-glucose co-transporter 2 (SGLT2) inhibitors inhibit glucose re-absorption in the proximal renal tubules. Two trials have shown significant reductions of cardiovascular (CV) events with empagliflozin and canagliflozin, which could not be attributed solely to their antidiabetic effects. The aim of the review is the critical presentation of suggested mechanisms/hypotheses for the SGLT2 inhibitors' cardioprotection. The search of the literature revealed many possible cardioprotective mechanisms, because SGLT2 inhibitors (i) increase natriuresis and act as diuretics with unique properties leading to a reduction in preload and myocardial stretch (the diuretic hypothesis); (ii) decrease blood pressure and afterload (the blood pressure lowering hypothesis), (iii) favor the production of ketones, which can act as a 'superfuel' in the cardiac and renal tissue (the 'thrifty substrate' hypothesis), (iv) improve many metabolic variables (the metabolic effects hypothesis), (v) exert many anti-inflammatory effects (the anti-inflammatory effects hypothesis), (vi) can act through the angiotensin II type II receptors in the context of simultaneous renin-angiotensin-aldosterone-system (RAAS) blockade leading to vasodilation and positive inotropic effects (the RAAS hypothesis), (vii) directly decrease the activity of the upregulated in heart failure Na+-H+ exchanger in myocardial cells leading to restoration of mitochondrial calcium handling in cardiomyocytes (the sodium hypothesis). Additionally, some SGLT2 inhibitors exhibit also SGLT1 inhibitory action possibly resulting in an attenuation of oxidative stress in ischemic myocardium (the SGLT1 inhibition hypothesis). Thus, many mechanisms have been suggested (and possibly act cumulatively) for the cardioprotective effects of SGLT2 inhibitors.
Insights
Sodium-glucose co-transporter 2 (SGLT2) inhibitors offer cardiovascular benefits beyond diabetes control. This review explores multiple proposed mechanisms, including diuretic effects, blood pressure reduction, and metabolic improvements, contributing to SGLT2 inhibitors
Area of Science:
- Cardiology
- Nephrology
- Pharmacology
Background:
- Sodium-glucose co-transporter 2 (SGLT2) inhibitors are primarily used for diabetes management.
- Clinical trials show empagliflozin and canagliflozin significantly reduce cardiovascular events.
- Observed cardiovascular benefits exceed those attributable to glycemic control alone.
Purpose of the Study:
- To critically review and present proposed mechanisms underlying the cardioprotective effects of SGLT2 inhibitors.
- To consolidate hypotheses regarding how SGLT2 inhibition impacts cardiovascular health.
Main Methods:
- Literature search for studies investigating SGLT2 inhibitors and their cardiovascular effects.
- Analysis and synthesis of proposed mechanistic pathways.
- Categorization of hypotheses including diuretic, blood pressure, metabolic, anti-inflammatory, RAAS, and sodium-hydrogen exchanger effects.
Main Results:
- SGLT2 inhibitors may exert cardioprotection through multiple pathways.
- Proposed mechanisms include natriuresis, blood pressure reduction, ketone production (thrifty substrate), metabolic improvements, anti-inflammatory actions, RAAS modulation, and direct effects on the Na+-H+ exchanger.
- Some agents may also inhibit SGLT1, potentially reducing oxidative stress in ischemic myocardium.
Conclusions:
- SGLT2 inhibitors possess diverse cardioprotective mechanisms that likely act cumulatively.
- These mechanisms extend beyond glucose-lowering effects, offering significant cardiovascular protection.
- Further research is warranted to fully elucidate and leverage these cardioprotective pathways.
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