Title : Let-7 g microRNA sensitizes fluorouracil-resistant human hepatoma cells.

Pub. Date : 2014 Apr

PMID : 24791593






6 Functional Relationships(s)
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1 Let-7 g microRNA sensitizes fluorouracil-resistant human hepatoma cells. Fluorouracil microRNA let-7g Homo sapiens
2 This study investigated the inhibitory effect of the let-7g microRNA on the expression of the HMGA2 gene in the fluorouracil (5-Fu)-resistant human hepatoma cell line Bel-7402/5-Fu, and the effect of let-7 g microRNA on drug sensitization in Bel-7402/5-Fu cells. Fluorouracil microRNA let-7g Homo sapiens
3 In addition, cyclin A was down-regulated in the let-7 g transfectants cells.The results showed that let-7 g microRNA contributed to an increase of 5-Fu-induced cell cycle inhibit in human hepatoma cell and sensitized cells to 5-Fu, leading to increased the effectiveness of the drug in treating hepatoma cancer. Fluorouracil microRNA let-7g Homo sapiens
4 In addition, cyclin A was down-regulated in the let-7 g transfectants cells.The results showed that let-7 g microRNA contributed to an increase of 5-Fu-induced cell cycle inhibit in human hepatoma cell and sensitized cells to 5-Fu, leading to increased the effectiveness of the drug in treating hepatoma cancer. Fluorouracil microRNA let-7g Homo sapiens
5 In addition, cyclin A was down-regulated in the let-7 g transfectants cells.The results showed that let-7 g microRNA contributed to an increase of 5-Fu-induced cell cycle inhibit in human hepatoma cell and sensitized cells to 5-Fu, leading to increased the effectiveness of the drug in treating hepatoma cancer. Fluorouracil microRNA let-7g Homo sapiens
6 In addition, cyclin A was down-regulated in the let-7 g transfectants cells.The results showed that let-7 g microRNA contributed to an increase of 5-Fu-induced cell cycle inhibit in human hepatoma cell and sensitized cells to 5-Fu, leading to increased the effectiveness of the drug in treating hepatoma cancer. Fluorouracil microRNA let-7g Homo sapiens