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10.1038/cgt.2015.8

http://scihub22266oqcxt.onion/10.1038/cgt.2015.8
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C4608443!4608443!25721205
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suck abstract from ncbi

pmid25721205      Cancer+Gene+Ther 2015 ; 22 (4): 172-80
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  • Gene Therapy for Radioprotection #MMPMID25721205
  • Everett WH; Curiel DT
  • Cancer Gene Ther 2015[Mar]; 22 (4): 172-80 PMID25721205show ga
  • Radiation therapy is a critical component of cancer treatment with over half of patients receiving radiation during their treatment. Despite advances in image guided therapy and dose fractionation, patients receiving radiation therapy are still at risk for side effects due to off-target radiation damage of normal tissues. To reduce normal tissue damage, researchers have sought radioprotectors, agents capable of protecting tissue against radiation by preventing radiation damage from occurring or by decreasing cell death in the presence of radiation damage. While much early research focused on small molecule radioprotectors, there has been a growing interest in gene therapy for radioprotection. The amenability of gene therapy vectors to targeting, as well as the flexibility of gene therapy to accomplish ablation or augmentation of biologically relevant genes, makes gene therapy an excellent strategy for radioprotection. Future improvements to vector targeting and delivery should greatly enhance radioprotection through gene therapy.
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