Key result
Peripheral blood miR-143 is linked to ~36% higher odds of aortic tissue expression and dilation.
Why the study?
Aortic size-based criteria have limitations in predicting aortic events in BAV, necessitating evaluation of circulating microRNAs as potential clinical biomarkers correlating with aortic tissue.
Do circulating microRNA expression patterns correlate with aortic tissue levels in patients with bicuspid aortic valve disease?
Observational (n=49)
No
Do circulating microRNA expression patterns correlate with aortic tissue levels in patients with bicuspid aortic valve disease?
Odds Ratio: 1.36 (95% CI 1.19–2.01)
p-value: p=0.03
Circulating microRNAs, particularly miR-143 and miR-145, correlate significantly with aortic tissue levels and may serve as non-invasive biomarkers for proximal aortic remodeling in patients with bicuspid aortic valve disease.
May refine BAV aortic risk stratification beyond diameter; hypothesis-generating and requires prospective validation before clinical use.
Background: The limitation of aortic size-based criteria is gradually recognized in the prediction of aortic events especially in bicuspid aortic valve (BAV) cohorts, while most aortic events happen in patients with proximal aortic diameters <50 mm. Circulating microRNAs (miRs) have been addressed as a novel tool to improve risk stratification in patients with different aortopathies. We aimed to elucidate the correlation between peripheral whole blood and aortic tissue miRs in order to prove the potential availability as a biomarker in the clinical routine. Methods: All patients who received elective aortic valve repair/replacement ± proximal aortic replacement to BAV disease (n = 65, 2013–2018) were prospectively included. The expression of 10 miRs (miR-1, miR-17, miR-18a, miR-19a, miR-20a, miR-21, miR-106a, miR-133a, miR-143 and miR-145) was analyzed in the intraoperatively acquired aortic tissue as well as in the peripheral blood before the surgery. Results: We found a significant correlation between circulating miRs in the peripheral blood and aortic tissue levels of miR-21 (r = 0.293, p = 0.02), miR-133a (r = 0.43, p = 0.02), miR-143 (r = 0.68, p < 0.001), and miR-145 (r = 0.68, p < 0.001). Further, the multivariate logistic regression analysis revealed an association between blood and aortic tissue miR-143 levels each other (Odds Ratio [OR] 1.29, 95% Confidence Interval [CI] 1.11–1.67, p = 0.02; OR 1.36, 95% CI 1.19–2.01, p = 0.03, respectively) and a blood/aortic miR-143 level to dilated aorta (OR 3.61, 95% CI 1.62–9.02, p = 0.01; OR 2.92, 95% CI 1.81–7.05, p = 0.02, respectively). Conclusions: Our study demonstrates a significant correlation between peripheral whole blood and aortic tissue miRs, confirming the hypothesis that circulating miRs may reflect remodeling processes in the proximal aorta in bicuspid aortopathy patients.
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Naito et al. (2022) conducted an observational in Bicuspid aortic valve (BAV) associated aortopathy (n=49). Circulating microRNAs (miR-143) vs. Aortic tissue microRNAs was evaluated on Association between blood and aortic tissue miR-143 levels (OR 1.36, 95% CI 1.19-2.01, p=0.03). Peripheral whole blood levels of miR-143 were significantly associated with aortic tissue levels (OR 1.36) and dilated aorta in patients with bicuspid aortopathy.
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