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PMID: 25695957 已发表 · ppublish 英语

RNA Interference Using c-Myc-Conjugated Nanoparticles Suppresses Breast and Colorectal Cancer Models.

Molecular cancer therapeutics ·第 14 卷 ·第 5 期 ·2016-02-01

Tangudu Naveen K, Verma Vinod K, Clemons Tristan D, Beevi Syed S, Hay Trevor, Mahidhara Ganesh, Raja Meera, Nair Rekha A, Alexander Liza E, Patel Anant B, Jose Jedy, Smith Nicole M, Zdyrko Bogdan, Bourdoncle Anne, Luzinov Igor, Iyer K Swaminathan, Clarke Alan R, Dinesh Kumar Lekha

摘要

In this article, we report the development and preclinical validation of combinatorial therapy for treatment of cancers using RNA interference (RNAi). RNAi technology is an attractive approach to silence genes responsible for disease onset and progression. Currently, the critical challenge facing the clinical success of RNAi technology is in the difficulty of delivery of RNAi inducers, due to low transfection efficiency, difficulties of integration into host DNA and unstable expression. Using the macromolecule polyglycidal methacrylate (PGMA) as a platform to graft multiple polyethyleneimine (PEI) chains, we demonstrate effective delivery of small oligos (anti-miRs and mimics) and larger DNAs (encoding shRNAs) in a wide variety of cancer cell lines by successful silencing/activation of their respective target genes. Furthermore, the effectiveness of this therapy was validated for in vivo tumor suppression using two transgenic mouse models; first, tumor growth arrest and increased animal survival was seen in mice bearing Brca2/p53-mutant mammary tumors following daily intratumoral treatment with nanoparticles conjugated to c-Myc shRNA. Second, oral delivery of the conjugate to an Apc-deficient crypt progenitor colon cancer model increased animal survival and returned intestinal tissue to a non-wnt-deregulated state. This study demonstrates, through careful design of nonviral nanoparticles and appropriate selection of therapeutic gene targets, that RNAi technology can be made an affordable and amenable therapy for cancer.

文献信息
期刊
Molecular cancer therapeutics
期刊简称
Mol Cancer Ther
发表日期
2016-02-01
收录日期
2015-05-07
更新日期
2015-05-07
语言
英语
国家/地区
United States
NLM ID
101132535
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