Active Diabetes, Hormones & Metabolism Heart, Stroke & Blood

Improving prevention and treatment of heart failure in type 1 diabetes

In plain English

AI plain-English summary

People with type 1 diabetes who develop heart failure face worse outcomes than those without diabetes, yet the underlying biology remains poorly understood. This matters because most heart failure research has focused on type 2 diabetes, leaving a critical gap in knowledge for type 1 diabetes. The researcher proposes that damage to the tiny blood vessels supplying the heart—cardiac microvascular disease—may drive the worse outcomes. To test this, they will build a risk prediction tool to identify high-risk individuals, run an observational study to track how microvascular disease affects heart failure progression, and test whether a specific drug class (SGLT1/2 inhibitors) can repair those damaged vessels. If the research succeeds, it could transform how clinicians prevent and treat heart failure in type 1 diabetes. Instead of relying on approaches designed for type 2 diabetes, doctors could use targeted screening and therapies that address the distinct microvascular pathology. This would mean better survival and quality of life for a patient group currently underserved by existing treatments. The work is patient-centred and directly translational, aiming to change clinical practice within the fellowship period.

View original technical description
Heart failure (HF) outcomes are worse in people with type 1 (T1D) and type 2 diabetes (T2D) than in those without diabetes. Research in this area is however lacking, and where present has primarily focused on T2D. There is limited understanding of the pathophysiology of HF in T1D despite its poor prognosis. The overall aim of my Fellowship is to address this knowledge gap in prevention and treatment of HF in individuals with T1D. I hypothesise that the presence of cardiac microvascular disease (MVD) may play an important role in the pathophysiology and outcomes of HF in T1D. In my proposed program of patient-centred research I will: 1. Develop and validate a novel risk prediction model including microvascular parameters to improve identification of T1D individuals at high-risk of HF; 2. Conduct a prospective observational study to explore the pathophysiological role of cardiac MVD in patients with T1D and HF; 3. Perform a mechanistic study to determine whether an SGLT1/2 inhibitor improves myocardial MVD in T1D with established HF. My Fellowship will address a significant unmet need, providing novel insights into HF in T1D and potentially improving strategies for prevention and treatment of HF in T1D.

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Researchers

Ify Mordi (EPMC Awardee)

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Original classification

None

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