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Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure

Publication ,  Conference
Cho, H; Lieu, M; Kereliuk, S; Roy, R; Gao, E; Koch, W
Published in: Circulation Research
August 2025

G protein-coupled receptor kinase 2 (GRK2) is a key regulator of β-adrenergic receptor (β-AR) signaling and a promising therapeutic target for heart failure (HF). Pathological upregulation of GRK2 following cardiac injury contributes to β-AR desensitization and impaired cardiac function. Recent evidence suggests that miR-181a can target GRK2 expression in cardiomyocytes, however, the functional consequences of increasing miR-181a expression in the heart on GRK2 regulation remain unclear. We hypothesize that miR-181a overexpression can reduce GRK2 expression in cardiomyocytes, mitigating its maladaptive responses to stress. Neonatal rat ventricular myocytes (NRVMs) were transfected with miR-181a mimic, scrambled control, or Kaposi sarcoma-associated herpesvirus (KSHV) miR-K12-3 (miR-K12) mimic. MiR-K12 is a miRNA known to directly target GRK2 to promote endothelial cell migration and invasion and was included as a positive control. After transfection, cells were stimulated with isoproterenol (ISO) to induce β-AR signaling. Prolonged ISO treatment increased GRK2 levels in control and scrambled miRNA groups, whereas miR-181a overexpression significantly attenuated this response (p<0.05). Additionally, ISO-induced upregulation of hypertrophic markers was significantly reduced with miR-181a overexpression (p<0.05). miR-181a overexpression reduces ISO-induced upregulation of GRK2 and hypertrophic markers in cardiomyocytes, suggesting a protective role in GRK2-mediated β-AR signaling and pathological remodeling. Ongoing studies aim to elucidate the molecular mechanisms underlying this regulation. In vivo studies utilizing AAV-mediated miR-181a delivery in a transverse aortic constriction (TAC) model, along with in vivo hemodynamic assessments, will further evaluate its therapeutic potential in HF.

Duke Scholars

Published In

Circulation Research

DOI

EISSN

1524-4571

ISSN

0009-7330

Publication Date

August 2025

Volume

137

Issue

Suppl_1

Publisher

Ovid Technologies (Wolters Kluwer Health)

Related Subject Headings

  • Cardiovascular System & Hematology
  • 3202 Clinical sciences
  • 3201 Cardiovascular medicine and haematology
  • 1103 Clinical Sciences
  • 1102 Cardiorespiratory Medicine and Haematology
 

Citation

APA
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MLA
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Cho, H., Lieu, M., Kereliuk, S., Roy, R., Gao, E., & Koch, W. (2025). Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure. In Circulation Research (Vol. 137). Ovid Technologies (Wolters Kluwer Health). https://doi.org/10.1161/res.137.suppl_1.fri171
Cho, Heidi, Melissa Lieu, Stephanie Kereliuk, Rajika Roy, Erhe Gao, and Walter Koch. “Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure.” In Circulation Research, Vol. 137. Ovid Technologies (Wolters Kluwer Health), 2025. https://doi.org/10.1161/res.137.suppl_1.fri171.
Cho H, Lieu M, Kereliuk S, Roy R, Gao E, Koch W. Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure. In: Circulation Research. Ovid Technologies (Wolters Kluwer Health); 2025.
Cho, Heidi, et al. “Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure.” Circulation Research, vol. 137, no. Suppl_1, Ovid Technologies (Wolters Kluwer Health), 2025. Crossref, doi:10.1161/res.137.suppl_1.fri171.
Cho H, Lieu M, Kereliuk S, Roy R, Gao E, Koch W. Abstract Fri171: MiRNA-181a-mediated Downregulation of GRK2 as a Potential Therapeutic Strategy for Heart Failure. Circulation Research. Ovid Technologies (Wolters Kluwer Health); 2025.

Published In

Circulation Research

DOI

EISSN

1524-4571

ISSN

0009-7330

Publication Date

August 2025

Volume

137

Issue

Suppl_1

Publisher

Ovid Technologies (Wolters Kluwer Health)

Related Subject Headings

  • Cardiovascular System & Hematology
  • 3202 Clinical sciences
  • 3201 Cardiovascular medicine and haematology
  • 1103 Clinical Sciences
  • 1102 Cardiorespiratory Medicine and Haematology