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Published on: February 28, 2019
SOX2-OT serves as a diagnostic and prognostic biomarker for hypertensive left ventricular hypertrophy by targeting
Hanlu Gao1, Zuliang Zhao2, Jinping Wu3
1Internet Hospital Office, The First Affiliated Hospital of Ningbo University, Ningbo, 315000, China.
Abstract:
This study aims to explore the clinical significance and underlying mechanism of long noncoding RNAs (lncRNAs) SOX2-OT in hypertensive left ventricular hypertrophy (LVH). Primary hypertensives without LVH (n = 182) and with LVH (n = 104) were enrolled. ROC curve evaluated its diagnostic value for hypertensive LVH. Patients were followed for five years. Kaplan-Meier and Cox analyses were conducted to assess the prognostic value and identify potential risk factors for adverse cardiovascular events (MACEs). An in vitro model of Ang II-induced cardiomyocytes was established. Cell proliferation and apoptosis were analyzed using CCK-8 and flow cytometry. RT-qPCR was employed to detect the levels of SOX2-OT, miR-30d-5p, RUNX1, hypertrophy markers (ANP, BNP, and β-MHC), and anti-hypertrophic markers (α-MHC and Serca2α). Patients with hypertensive LVH exhibited higher SOX2-OT, RUNX1, and lower miR-30d-5p expression. SOX2-OT effectively distinguished LVH patients from hypertensive controls, with a sensitivity of 80.77% and specificity of 92.31%. Elevated SOX2-OT was correlated with higher MACE risk and may be a severe predictive factor. Mechanistically, SOX2-OT or RUNX1 directly targets miR-30d-5p. SOX2-OT downregulation could mitigate the increase in Ang II-induced myocardial hypertrophy markers, lower anti-hypertrophic marker levels, suppress cell proliferation, and boost apoptosis. Conversely, decreased miR-30d-5p appears to partially reverse these effects. SOX2-OT is upregulated in hypertensive LVH with favorable diagnostic performance and is correlated with adverse cardiovascular event risk.