1. Decrease of miR-195 Promotes Chondrocytes Proliferation and Maintenance of Chondrogenic Phenotype via Targeting FGF-18 Pathway
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  2. miR-195 Regulates Proliferation and Apoptosis through Inhibiting the mTOR/p70s6k Signaling Pathway by Targeting HMGA2 in Esophageal Carcinoma Cells
    Yong Li et al, 2017, Disease Markers CrossRef
  3. The role of microRNAs in the pathophysiology of adrenal tumors
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  4. MicroRNA-195 inhibits the proliferation and invasion of pancreatic cancer cells by targeting the fatty acid synthase/Wnt signaling pathway
    Zhichao Xu et al, 2017, Tumour Biol. CrossRef
  5. MicroRNA-195 inhibits cell proliferation, migration and invasion in laryngeal squamous cell carcinoma by targeting ROCK1
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  6. HMGA1 Overexpression is Associated With the Malignant Status and Progression of Breast Cancer
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  7. MicroRNA-195 regulates docetaxel resistance by targeting clusterin in prostate cancer
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  8. MicroRNA-guided gene expression in prostate cancer: Literature and database overview
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  9. Bortezomib inhibited the progression of diffuse large B-cell lymphoma via targeting miR-198
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  10. The roles of tumor-derived exosomes in non-small cell lung cancer and their clinical implications.
    Hongmei Zheng et al, 2018, J Exp Clin Cancer Res CrossRef
  11. Identification of Potential miRNAs Biomarkers for High-Grade Prostate Cancer by Integrated Bioinformatics Analysis
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  12. Ailanthone exerts an antitumor function on the development of human lung cancer by upregulating microRNA-195
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  13. HMGA1 in cancer: Cancer classification by location
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  14. Comment on ‘MicroRNA-214 suppresses growth, migration and invasion through a novel target, high mobility group AT-hook 1, in human cervical and colorectal cancer cells’
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  15. ELK1‐induced upregulation of lncRNA TRPM2‐AS promotes tumor progression in gastric cancer by regulating miR‐195/ HMGA1 axis
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  16. EGR1 interacts with DNMT3L to inhibit the transcription of miR-195 and plays an anti-apoptotic role in the development of gastric cancer.
    Yang Yang et al, 2019, J Cell Mol Med CrossRef
  17. MicroRNA Biomarker hsa-miR-195-5p for Detecting the Risk of Lung Cancer
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  18. High Mobility Group A (HMGA): Chromatin Nodes Controlled by a Knotty miRNA Network
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  19. Overexpression of SOX4 induces up-regulation of miR-126 and miR-195 in LNCaP prostate cancer cell line
    Nam Nhut Phan et al, 2020, Cytotechnology CrossRef
  20. Suppressed microRNA‐195‐5p expression in mycosis fungoides promotes tumor cell proliferation
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  21. Identification of novel diagnostic and prognostic miRNA signatures in endometrial cancer
    Muralidharan Jayaraman et al, 2017, Genes Cancer CrossRef
  22. HMGA Proteins in Hematological Malignancies
    Angela Minervini et al, 2020, Cancers CrossRef
  23. miRNAs as biomarkers for early cancer detection and their application in the development of new diagnostic tools
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  25. MiRNAs and radical prostatectomy: Current data, bioinformatic analysis and utility as predictors of tumour relapse
    Maria Yu. Konoshenko et al, 2021, Andrology CrossRef
  26. MicroRNA-296-5p inhibits cell proliferation by targeting HMGA1 in colorectal cancer.
    Guohui Yan et al, 2021, Exp Ther Med CrossRef
  27. miR-195-5p regulates cell proliferation, apoptosis, and invasion of thyroid cancer by targeting telomerase reverse transcriptase
    Zhiwen Liu et al, 2021, Bioengineered CrossRef
  28. Single-cell analysis of a tumor-derived exosome signature correlates with prognosis and immunotherapy response
    Jiani Wu et al, 2021, J Transl Med CrossRef
  29. MicroRNAs as biomarkers for prostate cancer prognosis: a systematic review and a systematic reanalysis of public data
    Sharmila Rana et al, 2022, Br J Cancer CrossRef
  30. MicroRNAs: Key Regulators in Lung Cancer
    Younes El Founini et al, 2021, MIRNA CrossRef
  31. The Potential of MicroRNAs as Non-Invasive Prostate Cancer Biomarkers: A Systematic Literature Review Based on a Machine Learning Approach
    Emilia Bevacqua et al, 2022, Cancers CrossRef
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    Luca Volpini et al, 2023, Aspects of Molecular Medicine CrossRef
  33. Inhibiting miR-195-5p Induces Proliferation of Human Corneal Endothelial Cells
    Mohit Parekh et al, 2023, IJMS CrossRef
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    Hongyuan Liang et al, 2023, Biomedicine & Pharmacotherapy CrossRef
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