Key result
Female SLE with nonobstructive chest pain is linked to ~5-point lower LVEF versus controls.
Why the study?
Women with SLE have elevated CVD risk and often have chest pain without obstructive CAD, prompting investigation using cMRI into the relationship between SLE, inflammatory biomarkers, and cardiac function.
Does stress-rest cMRI identify cardiac dysfunction and correlate with inflammatory markers in women with SLE reporting chest pain without obstructive CAD?
Cross-Sectional (n=35)
No
Does stress-rest cMRI identify cardiac dysfunction and correlate with inflammatory markers in women with SLE reporting chest pain without obstructive CAD?
Absolute Event Rate: 59% vs 64%
p-value: p=0.0291
In women with SLE and chest pain without obstructive CAD, cMRI frequently identifies coronary microvascular dysfunction and reduced LV function that correlates with disease activity and inflammatory markers.
cMRI may detect microvascular dysfunction and reduced LVEF in symptomatic SLE without obstructive CAD; leaves open whether screening alters outcomes.
Background: Women with SLE have an elevated risk of CVD morbidity and mortality and frequently report chest pain in the absence of obstructive CAD. Echocardiographic studies often demonstrate reduced LV function, correlating with higher disease activity. We used cardiac MRI (cMRI) to investigate the relationship between SLE, related inflammatory biomarkers and cardiac function in female SLE patients. Methods: Women with SLE reporting chest pain with no obstructive CAD (n=13) and reference controls (n=22) were evaluated using stress-rest cMRI to measure LV structure, function, tissue characteristics, and myocardial perfusion reserve index (MPRI). Coronary microvascular dysfunction (CMD) was defined as MPRI <1.84. Serum samples were analyzed for inflammatory markers. Relationships between clinical and cMRI values of SLE subjects were assessed, and groups were compared. Results: 40% of SLE subjects had MPRI < 1.84 on cMRI. Compared to controls, SLE subjects had higher LV volumes and mass and lower LV systolic function. SLICC DI was related to worse cardiac function and higher T1. CRP was related to higher cardiac output and a trend to better systolic function, while ESR and fasting insulin were related to lower LV mass. Lower fasting insulin levels correlated with increased ECV. Conclusions: Among our female SLE cohort, 40% had CMD, and SLICC DI correlated with worse cardiac function and diffuse fibrosis. Higher inflammatory markers and low insulin levels may associate with LV dysfunction. Our findings underline the potential of non-invasive cMRI as a tool for monitoring cardiovascular function in SLE patients.
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Hagiwara et al. (2023) conducted a cross-sectional in Systemic lupus erythematosus (SLE) with chest pain (n=35). Systemic lupus erythematosus (SLE) vs. Reference controls was evaluated on Left ventricular ejection fraction (LVEF) (p=0.0291). Female SLE patients with chest pain but no obstructive CAD demonstrated significantly lower left ventricular ejection fraction (59% vs 64%) compared to healthy reference controls.
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