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Positive selection of gene-modified cells increases the efficacy of pancreatic cancer suicide gene therapy. Molecular cancer therapeutics [Mol Cancer Ther] Journal article

 
Martinez-Quintanilla J, Cascallo M, Gros A, Fillat C, Alemany R 
Positive selection of gene-modified cells increases the efficacy of pancreatic cancer suicide gene therapy. [JOURNAL ARTICLE]
Mol Cancer Ther 2009 Nov 3.


Thymidine kinase (TK)-mediated suicide gene therapy has been considered for the treatment of pancreatic cancer. However, despite a bystander effect, the proportion of transduced tumor cells has proven too low to result in efficacy. We propose the use of a drug-selectable marker (MDR1) to enrich TK-expressing cells using chemotherapy. This enrichment or positive selection phase may increase the efficacy of suicide gene therapy. To test this strategy, we generated stable NP18MDR/TK-GFP transfectants and showed docetaxel resistance in vivo. Mixed tumors of MDR/TK-expressing cells and parental NP18 cells were established and docetaxel was used to increase the proportion of TK-expressing cells. After this positive selection phase, suicide gene therapy with ganciclovir was applied. Upon positive selection, the proportion of TK-expressing cells increased from 4% to 22%. Subsequent suicide gene therapy was more effective compared with a control group without positive selection. Starting with 10% of TK-expressing cells the positive-negative selection strategy completely inhibited tumor growth. Taken together, these results suggest that a positive-negative selection strategy based on MDR and TK genes represents an efficient way to increase the proportion of TK-expressing cells in the tumor and the efficacy of TK-mediated suicide gene therapy. [Mol Cancer Ther 2009;8(11):3098-107].



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