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March 5, 20260 citations

Short- and Long-term Metabolic Exposure Data as Predicators of Coronary Microvascular Dysfunction in a Positron Emission Tomography Myocardial Perfusion Imaging (PET-MPI) Cohort with Near Concurrent Angiography.

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JGJoseph Van GalenSRSarah J. RatcliffeJBJamieson M. Bourque

Key Result

Higher BMI and insulin-dependent diabetes were significantly associated with coronary microvascular dysfunction in patients without epicardial obstruction (p=0.0072 and p=0.048).

Key Points

  • To assess the relationship between metabolic exposure data and coronary microvascular dysfunction using PET-MPI.
  • Analyzed a mixed-sex cohort of 85 patients with angiographically excluded epicardial obstruction.
  • Developed a multivariate model to associate repeated-measurement metabolic data with microvascular stress flow reactivity.
  • Examined body mass index and insulin-dependent diabetes mellitus as factors influencing coronary microvascular health.
  • Body mass index and insulin-dependent diabetes were significantly associated with coronary microvascular dysfunction.
  • Statistical findings included a β of -0.019 (p=0.0072) for body mass index and -0.33 (p=0.048) for diabetes.
  • Single time-point metabolomics data produced results comparable to those from repeated-measurement data.

Structured PICO

Do metabolic risk factors such as BMI and insulin-dependent diabetes predict coronary microvascular dysfunction in patients without epicardial obstruction?

P
Population
85 mixed-sex patients for whom epicardial obstruction was angiographically excluded
I
Intervention
Repeated-measurement metabolic data (including body mass index and insulin-dependent diabetes mellitus) collected in the year prior to stress PET-MPI
O
Outcome
Microvascular stress flow reactivity as assessed by positron emission tomography myocardial perfusion imaging (PET-MPI)surrogate

Metabolic risk factors, specifically BMI and insulin-dependent diabetes, are significant predictors of coronary microvascular dysfunction in patients without epicardial obstruction, with single time-point data performing comparably to repeated measurements.

Abstract

BackgroundCoronary microvascular disease (CMD) is defined by impaired myocardial stress flow reactivity and is associated with worse cardiovascular outcomes. Studying CMD is complicated by the overlap of its risk factors and patient-important cardiovascular sequelae with those of epicardial atherosclerotic disease. Published studies have not yet used longitudinal data to investigate the time dependencies of dynamic processes like obesity in their effects on microvascular health.Methods and ResultsIn a mixed-sex cohort of 85 patients for whom epicardial obstruction was angiographically excluded, a multivariate model was developed to measure strengths of association between repeated-measurement metabolic data and microvascular stress flow reactivity as assessed by position emission tomography myocardial perfusion imaging (PET-MPI). Body mass index and the diagnosis of insulin-dependent diabetes mellitus were associated with CMD on clinically meaningful scales when analyzing all metabolic data collected in the year prior to stress PET-MPI (β 95%CI: -0.019 -0.033,-0.0051, p=0.0072; -0.33 -0.65, -0.0026, p = 0.048). Parallel modelling using single time-point metabolomics data generated comparable results, suggesting that simplified assessments may be used as valid surrogates for repeated-measurement data in this setting.

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Cite This Study

Galen et al. (2026) studied this question. Higher BMI and insulin-dependent diabetes were significantly associated with coronary microvascular dysfunction in patients without epicardial obstruction (p=0.0072 and p=0.048).

synapsesocial.com/papers/69a91df9d6127c7a504c16d7https://doi.org/10.1080/1354750x.2026.2639408
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