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SGLT2 Inhibition and cardiovascular events: why did EMPA-REG Outcomes surprise and what were the likely mechanisms?
Naveed Sattar1, James McLaren2, Søren L Kristensen3
1BHF Glasgow Cardiovascular Research Centre, Institute of Cardiovascular and Medical Sciences, University of Glasgow, 126 University Avenue, Glasgow, G12 8TA, UK. naveed.sattar@glasgow.ac.uk.
Insights
Empagliflozin significantly reduced heart failure hospitalizations and cardiovascular deaths, offering unexpected benefits beyond its primary outcome. These findings suggest novel therapeutic mechanisms for managing cardiovascular risk in diabetes patients.
Area of Science:
- Cardiology
- Endocrinology
- Nephrology
Background:
- Cardiovascular endpoint trials are crucial for new diabetes agents.
- Previous trials showed modest benefits; EMPA-REG Outcomes yielded surprising results.
Purpose of the Study:
- To review cardiovascular trial requirements for diabetes drugs.
- To analyze EMPA-REG Outcomes results and explore underlying mechanisms.
- To assess the potential of SGLT2 inhibitors for cardiovascular benefit.
Main Methods:
- Review of cardiovascular endpoint trials for diabetes agents.
- Analysis of EMPA-REG Outcomes trial data.
- Exploration of non-atherothrombotic mechanisms of SGLT2 inhibition.
Main Results:
- Empagliflozin showed modest reduction in primary composite outcome (MI, stroke, CV death).
- Significant 30-40% reductions in heart failure hospitalization and CV/all-cause deaths were observed.
- Unexpectedly high efficacy suggests non-atherothrombotic benefits.
Conclusions:
- SGLT2 inhibition's renal effects (diuresis, improved arteriolar response) likely drive cardiovascular benefits.
- Improved cardiac function (systolic and diastolic) reduces heart failure hospitalization and sudden cardiac death risk.
- Further research is needed to confirm mechanisms and identify broader patient groups for SGLT2 inhibitor therapy.
Abstract:
While the modest reduction in the primary composite outcome of myocardial infarction, stroke or cardiovascular death in the EMPA-REG Outcomes trial was welcome, the 30-40% reductions in heart failure hospitalisation (HFH) and cardiovascular and all-cause deaths in patients treated with empagliflozin were highly impressive and unexpected. In this review, we discuss briefly why cardiovascular endpoint trials for new diabetes agents are required and describe the results of the first four such trials to have reported, as a precursor to understanding why the EMPA-REG Outcomes results came as a surprise. Thereafter, we discuss potential mechanisms that could explain the EMPA-REG Outcomes results, concentrating on non-atherothrombotic effects. We suggest that the main driver of benefit may derive from the specific effects of sodium-glucose linked transporter-2 (SGLT2) inhibition on renal sodium and glucose handling, leading to both diuresis and improvements in diabetes-related maladaptive renal arteriolar responses. These haemodynamic and renal effects are likely to be beneficial in patients with clinical or subclinical cardiac dysfunction. The net result of these processes, we argue, is an improvement in cardiac systolic and diastolic function and, thereby, a lower risk of HFH and sudden cardiac death. We also discuss whether other drugs in this class are likely to show similar cardiovascular benefits. Finally, areas for future research are suggested to better understand the relevant mechanisms and to identify other groups who may benefit from SGLT2 inhibitor therapy.
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Major types that are helpful drug targets include:
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