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NCT Number: NCT04899479

Peri-treatment of SGLT-2 Inhibitor on Myocardial Infarct Size and Remodeling Index in Patients With Acute Myocardial Infarction and High Risk of Heart Failure Undergoing Percutaneous Coronary Intervention

We aimed to identify whether SGLT-2 inhibitor administration before and after coronary intervention is effective in reducing the size of infarction and myocardial remodeling in patients with acute myocardial infarction (AMI) and high risk of heart failure, and its mechanism. For this reason, we compared cardiac magnetic resonance imaging (CMR) parameters and clinical outcomes between the SGLT-2 inhibitor group and the control group to confirm the efficacy and safety of SGLT-2 inhibitors.

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Key information

Age range

18 year and older

Sex eligibility

All sexes

Study type

Interventional

Phase

Phase 4

Primary location

About this study

After the introduction of percutaneous coronary intervention (PCI) as a method to normalize blood flow in the treatment of coronary artery disease, not only the technical aspects of coronary intervention but also the devices and medications have been improved over the past 30 years. However, despite these advances, morbidity, and mortality of AMI are still high. In particular, in patients with ST-segment elevation MI (STEMI), the 1-year mortality rate and hospitalization rate due to heart failure are 10%, and 22%, respectively. Accordingly, various efforts are being made to improve the prognosis of AMI and to reduce the infarct size, which is a major prognostic factor. The most effective method for achieving this goal to early and successful revascularization by PCI. However, restoring blood flow, which is a prerequisite for relieving ischemia, can paradoxically cause damage to the myocardium and death of the myocardium by itself. This phenomenon is called myocardial reperfusion injury. Several pharmacological and mechanical treatments targeting this phenomenon have been studied, and the experimental and small-scale clinical trials have been shown to have the effect of reducing infarct size and relieving myocardium.4 However, to date, large-scale clinical trials have not demonstrated clinical benefits.

SGLT-2 inhibitors are developed to lower blood sugar and treat type 2 diabetes mellitus (DM) by inhibiting Sodium glucose co-transporter-2 in proximal renal tubule, releasing glucose into the urine and preventing reabsorption. However, SGLT-2 inhibitors are known to have an effect on lowering cardiovascular events in addition to lowering blood sugar. In three large-scale, multicenter, randomized trials to evaluate the effects of SGLT-2 in type 2 diabetic patients, the combined outcome consisting of cardiac death or readmission due to heart failure was significantly lowered compared to the placebo group. In particular, DECLARE-TIMI 58 trial confirmed that this effect was consistent regardless of the history of atherosclerotic cardiovascular disease or heart failure.8 In addition, DAPA-CKD trial showed that SGLT-2 inhibitor significantly reduced the composite outcome consisting of cardiovascular death or readmission due to heart failure as well as the kidney-related outcome compared to the placebo group in patients with chronic kidney disease regardless of type 2 DM. Similarly, EMPEROR-Reduced and DAPA-HF trials consistently demonstrated that SGLT-2 inhibitor was associated with significantly lower risk of a composite of cardiovascular death or worsening heart failure in patients with heart failure with reduced ejection fraction. Therefore, the current guideline recommended the use of SGLT-2 inhibitor in patients with heart failure with reduced ejection fraction, with a conjunction of goal-directed medical therapy. Nevertheless, the mechanism that can explain this has been extensively investigated, but it is not clear yet. Several potential hypotheses have been proposed as mechanisms such as increased natriuresis, decreased blood pressure, decreased inflammation, and decreased reactive oxidative stress. In this regard, it is anticipated that the use of SGLT-2 inhibitors will benefit even in patients with AMI and high risk of heart failure in both acute and chronic phases.

Therefore, we aimed to identify whether SGLT-2 inhibitor administration before and after coronary intervention is effective in reducing the size of infarction and myocardial remodeling in patients with AMI and high risk of heart failure, and its mechanism. For this reason, we compared CMR parameters and clinical outcomes between the SGLT-2 inhibitor group and the control group to confirm the efficacy and safety of SGLT-2 inhibitors.

Who can participate

Healthy volunteers accepted: No

Only the study team can determine whether someone qualifies for participation.

Inclusion criteria

  • 1) Subject must be at least 18 years of age 2) Subject is able to verbally confirm understandings of risks, benefits and treatment alternatives of receiving SGLT-2 inhibitor and he/she or his/her legally authorized representative provides written informed consent prior to any study related procedure 3) Diagnosis of Type 1 myocardial infarction (MI) (ST-segment elevation MI [STEMI] or Non-ST-segment elevation MI [NSTEMI]) i) Detection of a rise and/or fall of cardiac troponin values with at least 1 value above the 99th percentile upper reference limit ii) Symptoms or electrocardiographic changes suggesting myocardial ischemia 4) High risk of heart failure (at least one of the two criteria below are met) i) Left ventricular ejection fraction < 50% ii) Symptoms or signs of pulmonary congestion requiring treatment

Exclusion criteria

  • 1) Target lesion is not suitable for PCI by operator's decision 2) Patients requiring cardiopulmonary resuscitation due to cardiac arrest before randomization 3) Rescue PCI after thrombolysis or facilitated PCI 4) Previous MI 5) Previous history of heart failure 6) Patients who have been taking SGLT-2 inhibitor 7) Patients with glomerular filtration rate < 30ml/min/1.73m2 or on dialysis 8) Type 1 diabetes mellitus (DM) 9) Known hypersensitivity or contraindications to study medications (SGLT-2 inhibitor) 10) Pregnant or lactating women 11) Non-cardiac co-morbid conditions are present with life expectancy <1 year or that may result in protocol non-compliance (per site investigator's medical judgment)

Treatment and study plan

SGLT2 inhibitor

Drug

In patients with AMI and high risk of heart failure, 1:1 randomization will be performed to either SGLT2 inhibitor or control group.

Control

Other

In patients with AMI and high risk of heart failure, 1:1 randomization will be performed to either SGLT2 inhibitor or control group.

Primary outcomes

  1. Myocardial infract size (IS)

    Time frame: at 6-month follow-up

    IS measured using CMR

  2. ∆Left ventricular end-systolic volume

    Time frame: Between index hospitalization and 6-month follow-up

    Difference of left ventricular end-systolic volume measured by CMR

Secondary outcomes

  1. Acute kidney injury

    Time frame: Within 3 days after index PCI

    According to KDIGO guideline

  2. Myocardial IS

    Time frame: Within 3 days after index PCI

    IS measured using CMR

  3. Microvascular obstruction (MVO)

    Time frame: Within 3 days after index PCI

    MVO measured using CMR

  4. IS

    Time frame: Within 3 days after index PCI

    measured by peak cardiac enzyme

  5. ∆left ventricular end-diastolic volume

    Time frame: Between index hospitalization and 6-month follow-up

    Difference of left ventricular end-diastolic volume measured using CMR

  6. ∆left ventricular ejection fraction

    Time frame: Between index hospitalization and 6-month follow-up

    Difference of left ventricular ejection fraction measured using CMR

  7. LV adverse remodeling

    Time frame: Between index hospitalization and 6-month follow-up

    measured by CMR

  8. LV reverse remodeling

    Time frame: Between index hospitalization and 6-month follow-up

    measured by CMR

  9. MVO

    Time frame: at 6-month follow-up

    measured using CMR

  10. Changes of NT-proBNP level

    Time frame: Between index hospitalization and 6-month follow-up

    Difference of NT-proBNP

  11. Estimated glomerular filtration rate

    Time frame: 6 months after index PCI

    Kidney function

  12. Cardiovascular death, myocardial infarction, cerebrovascular events, stent thrombosis, and re-hospitalization due to cardiac cause

    Time frame: 12 months after index PCI

    MACE

  13. Cardiovascular death, or re-hospitalization due to cardiac cause

    Time frame: 12 months after index PCI

    cardiovascular death or re-hospitalization due to cardiac cause

  14. All-cause death

    Time frame: 12 months after index PCI

    All-cause death during follow-up

  15. Cardiovascular death

    Time frame: 12 months after index PCI

    Cardiovascular death during follow-up

  16. MI

    Time frame: 12 months after index PCI

    MI during follow-up

  17. Repeat revascularization

    Time frame: 12 months after index PCI

    Repeat revascularization during follow-up

  18. Re-hospitalization due to heart failure

    Time frame: 12 months after index PCI

    Re-hospitalization due to heart failure during follow-up

  19. Re-hospitalization due to cardiac cause

    Time frame: 12 months after index PCI

    Re-hospitalization due to cardiac cause during follow-up

  20. Cerebrovascular events

    Time frame: 12 months after index PCI

    ischemic or hemorrhagic stroke during follow-up

Study contacts

Contact information is provided by the study sponsor or research team.

Ki Hong Choi, MD

CONTACT

[email protected]

82-2-3410-6653

Young Bin Song, MD, PhD

CONTACT

[email protected]

82-2-3410-1246

Sponsors and collaborators

Lead sponsor

Samsung Medical Center

Other

Registry information

Official study title

Peri-tREatment of SGLT-2 Inhibitor on Myocardial Infarct Size and Remodeling Index Measured by Cardiac maGnetic rEsonance Imaging in Patients With Acute Myocardial Infarction and High Risk of Heart Failure Undergoing Percutaneous Coronary Intervention

Acronym: PRESTIGE-AMI

Important dates

Study start
2021
Primary completion
2025
Study completion
2025
First posted
May 24, 2021
Registry last updated
Jun 26, 2025

OpenTrials presents study information sourced from ClinicalTrials.gov. The official registry record should be consulted for the latest information.

View the official ClinicalTrials.gov record (opens in a new tab)

This listing is for discovery and informational purposes only. It is not medical advice, does not guarantee that a study is recruiting, and does not determine eligibility. Contact the study team and a qualified healthcare professional when considering participation.

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