1. Role of microRNAs in Hemophilia and Thrombosis in Humans
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  2. MiR-128-3p promotes the progression of deep venous thrombosis through binding SIRT1
    Jinan Han et al, 2023, Phlebology: The Journal of Venous Disease CrossRef
  3. Resistance exercise affects catheter-related thrombosis in rats through miR-92a-3p, oxidative stress and the MAPK/NF-κB pathway
    Cui Wen et al, 2021, BMC Cardiovascular Disorders CrossRef
  4. MiR-199a target regulates TAB2 to promote the migration of endodermal progenitor cells and inhibit deep vein thrombosis in rats
    Xiaolong NI et al, 2023, Minerva Pediatrics CrossRef
  5. Non-coding RNAs regulating endothelial progenitor cells for venous thrombosis: promising therapy and innovation
    Li-Li Sun et al, 2024, Stem Cell Research & Therapy CrossRef
  6. Depleted miR-125a-5p Causes Vascular Endothelial Cell Dysfunction in Deep Vein Thrombosis by Targeting Angiopoietin 2
    Jianyuan Huang et al, 2023, Indian Journal of Hematology and Blood Transfusion CrossRef
  7. Comparison of the serum metabolic signatures based on 1H NMR between patients and a rat model of deep vein thrombosis
    Jie Cao et al, 2018, Scientific Reports CrossRef
  8. Apolipoprotein L Domain Containing 1 Inhibits Tissue Factor to Impede Thrombus Formation in a Rat Model of Deep Vein Thrombosis via Activating PI3K/Akt Pathway
    Yonggui Liao et al, 2023, Annals of Vascular Surgery CrossRef
  9. A Translational Model for Venous Thromboembolism: MicroRNA Expression in Hibernating Black Bears
    Amanda Fazzalari et al, 2021, Journal of Surgical Research CrossRef
  10. Inferior vena cava stenosis-induced deep vein thrombosis is influenced by multiple factors in rats
    Han Liu et al, 2020, Biomedicine & Pharmacotherapy CrossRef
  11. Role of miR-92a-3p, oxidative stress, and p38MAPK/NF-κB pathway in rats with central venous catheter related thrombosis
    Xiao Gan et al, 2020, BMC Cardiovascular Disorders CrossRef
  12. Identification of genes, pathways and transcription factor-miRNA-target gene networks and experimental verification in venous thromboembolism
    Yiming Su et al, 2021, Scientific Reports CrossRef
  13. Integrated Bioinformatics Analysis Identifies microRNA-200a-5p as a New Plasma Marker in Patients with Venous Thromboembolism
    Hong-tao Lan et al, 2022, Annals of Vascular Surgery CrossRef
  14. miR-374b-5p is increased in deep vein thrombosis and negatively targets IL-10
    Yunhong Zhang et al, 2020, Journal of Molecular and Cellular Cardiology CrossRef
  15. RETRACTED ARTICLE: Upregulated MiR-9-5p Protects Against Inflammatory Response in Rats with Deep Vein Thrombosis via Inhibition of NF-κB p50
    Minghui Ou et al, 2019, Inflammation CrossRef
  16. Overexpressed microRNA‐103a‐3p inhibits acute lower‐extremity deep venous thrombosis via inhibition of CXCL12
    Shaoliang Sun et al, 2020, IUBMB Life CrossRef
  17. LncRNA NEAT1 Promotes Vascular Endothelial Cell Dysfunction via miR-218-5p/GAB2 and Serves as a Diagnostic Biomarker for Deep Vein Thrombosis
    Shuping Wang et al, 2023, Clinical and Applied Thrombosis/Hemostasis CrossRef
  18. MiR-143-3p targets ATG2B to inhibit autophagy and promote endothelial progenitor cells tube formation in deep vein thrombosis
    Wangao Zhang et al, 2020, Tissue and Cell CrossRef
  19. Up-regulated miR-204-5p promoted the migration, invasion, and angiogenesis of endothelial progenitor cells to enhance the thrombolysis of rats with deep venous thrombosis by targeting SPRED1
    Mingchao Ding et al, 2022, Experimental Cell Research CrossRef
  20. Association study of miR-146a, miR-149, miR-196a2, and miR-499 polymorphisms with venous thromboembolism in a Korean population
    Jung Oh Kim et al, 2019, Journal of Thrombosis and Thrombolysis CrossRef
  21. Identification of a Plasma MicroRNA Profile Associated With Venous Thrombosis
    Alba Rodriguez-Rius et al, 2020, Arteriosclerosis, Thrombosis, and Vascular Biology CrossRef
  22. Effect of miR-495 on lower extremity deep vein thrombosis through the TLR4 signaling pathway by regulation of IL1R1
    Ke-Cheng Tang et al, 2018, Bioscience Reports CrossRef