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    Fan Wu et al, 2019, Journal of Physiology and Biochemistry CrossRef
  2. Non-coding RNAs in Cardiomyopathy and Heart Failure
    Paul Holvoet, 2021, Non-coding RNAs at the Cross-Road of Cardiometabolic Diseases and Cancer CrossRef
  3. Knockdown of TUG1 rescues cardiomyocyte hypertrophy through targeting the miR-497/MEF2C axis
    Guorong Zhang et al, 2021, Open Life Sciences CrossRef
  4. A Comprehensive Transcriptomics Analysis Reveals Long Non-Coding RNA to Be Involved in the Key Metabolic Pathway in Response to Waterlogging Stress in Maize
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  5. Non-Coding RNA Networks as Potential Novel Biomarker and Therapeutic Target for Sepsis and Sepsis-Related Multi-Organ Failure
    Domenico Di Raimondo et al, 2022, Diagnostics CrossRef
  6. Non-Coding RNAs: Emerging Therapeutic Targets in Spinal Cord Ischemia–Reperfusion Injury
    Xiao Ling et al, 2021, Frontiers in Neurology CrossRef
  7. Differentially expressed TUG1 and miR‑145‑5p indicate different severity of chronic heart failure and predict 2‑year survival prognosis
    Qinwei Zhu et al, 2021, Experimental and Therapeutic Medicine CrossRef
  8. Molecular regulation of hypoxia through the lenses of noncoding RNAs and epitranscriptome
    Safirul Islam et al, 2023, WIREs RNA CrossRef
  9. LncRNA TUG1 mediates ischemic myocardial injury by targeting miR-132-3p/HDAC3 axis
    Qiang Su et al, 2020, American Journal of Physiology-Heart and Circulatory Physiology CrossRef
  10. Long noncoding RNA TUG1 regulates the development of oral squamous cell carcinoma through sponging miR‐524‐5p to mediate DLX1 expression as a competitive endogenous RNA
    Shuyan Liu et al, 2019, Journal of Cellular Physiology CrossRef
  11. LncRNA TUG1 Promotes Apoptosis, Invasion, and Angiogenesis of Retinal Endothelial Cells in Retinopathy of Prematurity via MiR-145-5p
    Yuexia Wang et al, 2022, Frontiers in Medicine CrossRef