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miR-25 Tough Decoy Enhances Cardiac Function in Heart Failure.
Mol Ther. 2018 Mar 7;26(3):718-729. doi: 10.1016/j.ymthe.2017.11.014. Epub 2017 Nov 26.
2
Inhibition of miR-25 improves cardiac contractility in the failing heart.
Nature. 2014 Apr 24;508(7497):531-5. doi: 10.1038/nature13073. Epub 2014 Mar 12.
3
SERCA2a gene therapy restores microRNA-1 expression in heart failure via an Akt/FoxO3A-dependent pathway.
Eur Heart J. 2012 May;33(9):1067-75. doi: 10.1093/eurheartj/ehs043. Epub 2012 Feb 23.
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Inhibition of miR-25 ameliorates cardiac and skeletal muscle dysfunction in aged haploinsufficient (+/-) mice.
Mol Ther Nucleic Acids. 2024 Mar 28;35(2):102174. doi: 10.1016/j.omtn.2024.102174. eCollection 2024 Jun 11.
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Generation of Efficient miRNA Inhibitors Using Tough Decoy Constructs.
Methods Mol Biol. 2017;1521:41-53. doi: 10.1007/978-1-4939-6588-5_3.
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miR-146a Suppresses SUMO1 Expression and Induces Cardiac Dysfunction in Maladaptive Hypertrophy.
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Effects of MiR-214-3p Regulation of SERCA2a Expression on Contractility of Cardiomyocytes in Heart Failure Model.
Cell Mol Biol (Noisy-le-grand). 2022 Apr 30;68(4):208-216. doi: 10.14715/cmb/2022.68.4.25.
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[Expressions of SERCA2a and miR-25-3p/5p in myocardium of rats with heart failure and therapeutic effects of Xiefei Lishui recipe].
Zhongguo Ying Yong Sheng Li Xue Za Zhi. 2017 Feb 8;33(2):146-150. doi: 10.12047/j.cjap.5449.2017.037.

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MicroRNA: unveiling novel mechanistic and theranostic pathways in diabetic cardiomyopathy.
Front Pharmacol. 2025 Jul 23;16:1613844. doi: 10.3389/fphar.2025.1613844. eCollection 2025.
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CircRNA-based AntimiR therapy: A novel approach to hypertension treatment.
Noncoding RNA Res. 2025 May 5;13:94-108. doi: 10.1016/j.ncrna.2025.05.001. eCollection 2025 Aug.
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Inhibition of miR-25 ameliorates cardiac and skeletal muscle dysfunction in aged haploinsufficient (+/-) mice.
Mol Ther Nucleic Acids. 2024 Mar 28;35(2):102174. doi: 10.1016/j.omtn.2024.102174. eCollection 2024 Jun 11.
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Cardiac microRNAs: diagnostic and therapeutic potential.
Arch Med Sci. 2023 Aug 25;19(5):1360-1381. doi: 10.5114/aoms/169775. eCollection 2023.
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Targeting calcium regulators as therapy for heart failure: focus on the sarcoplasmic reticulum Ca-ATPase pump.
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Advances in MicroRNA Therapy for Heart Failure: Clinical Trials, Preclinical Studies, and Controversies.
Cardiovasc Drugs Ther. 2025 Feb;39(1):221-232. doi: 10.1007/s10557-023-07492-7. Epub 2023 Jul 28.

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The Phospholamban Journey 4 Decades After Setting Out for Ithaka.
Circ Res. 2017 Mar 3;120(5):781-783. doi: 10.1161/CIRCRESAHA.116.310007.
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Lentiviral Vector Design for Multiple shRNA Expression and Durable HIV-1 Inhibition.
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Production and Characterization of Vectors Based on the Cardiotropic AAV Serotype 9.
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Phospholamban interactome in cardiac contractility and survival: A new vision of an old friend.
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The emerging role of microRNAs in cardiovascular disease.
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MicroRNAs as therapeutic targets and biomarkers of cardiovascular disease.
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Proteomic profiling of the dystrophin-deficient mdx phenocopy of dystrophinopathy-associated cardiomyopathy.
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Inhibition of miR-25 improves cardiac contractility in the failing heart.
Nature. 2014 Apr 24;508(7497):531-5. doi: 10.1038/nature13073. Epub 2014 Mar 12.
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MicroRNA regulation and cardiac calcium signaling: role in cardiac disease and therapeutic potential.
Circ Res. 2014 Feb 14;114(4):689-705. doi: 10.1161/CIRCRESAHA.114.301798.
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microRNA therapeutics in cardiovascular disease models.
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