Silica nanoparticle is a possible safe carrier for gene therapy |
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Authors: | Zhigang Xue Desheng Liang Yumei Li Zhigao Long Qian Pan Xionghao Liu Lingqian Wu Shaihong Zhu Fang Cai Heping Dai Baisha Tang Kun Xia Jiahui Xia |
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Affiliation: | XUE Zhigang1*, LIANG Desheng1*, LI Yumei2, LONG Zhigao1, PAN Qian1, LIU Xionghao1, WU Lingqian1, ZHU Shaihong3, CAI Fang1, DAI Heping1, TANG Baisha2, XIA Kun1 & XIA Jiahui1 1. National Lab of Medical Genetics of China, Central South University, Changsha 410078, China; 2. The Frist Hosipal of Xiangya Medical College, Central South Univer- sity, Changsha 410078, China; 3. The Third Hosipal of Xiangya Medical College, Central South Uni- versity, Changsha 410013, China |
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Abstract: | In order to develop a safe and effective gene therapy carrier, some toxicological and biodynamical ex- periments were carried out on silica nanoparticles (SiNPs). First we prepared SiNPs with appropriate portions of cyclo- hexane, deionized water and ethyl silicate, and then trans- fected the modified SiNPs and GFP plasmid DNA complex into the HT1080 cells to test the effectiveness of transfection for gene therapy. At the same time, we injected the SiNPs into a number of mice through tail vein. Then we made the mice crossed to evaluate the acute, long-term and reproduc- tive toxicity. In vivo distribution analysis and pathological examination were made on both adult mice and their off- spring. SiNPs were uniform and had an average diameter of 40 nm, and the modified SiNPs carried exogenous DNA molecules into target cells and the transferred GFP fusion gene was effectively expressed in the cells. The SiNPs injected via tail vein were widely distributed in almost all of tissues, and the injected mice had the ability to reproduce normally. The in vivo and in vitro results of this study clearly show that SiNPs can be used as a safe and effective carrier for gene transfection and gene therapy. |
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Keywords: | silica nanoparticles (SiNPs) carrier gene therapy toxi- cology reproduction. |
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