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  10. Genome-Wide Screen of miRNAs and Targeting mRNAs Reveals the Negatively Regulatory Effect of miR-130b-3p on PTEN by PI3K and Integrin β1 Signaling Pathways in Bladder Carcinoma
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  11. Non-coding RNA in bladder cancer
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  14. Membrane-type matrix metalloproteases as diverse effectors of cancer progression
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