A nonviral pHEMA+chitosan nanosphere-mediated high-efficiency gene delivery system

被引:22
作者
Eroglu, Erdal [1 ]
Tiwari, Pooja M. [1 ]
Waffo, Alain B. [1 ]
Miller, Michael E. [2 ]
Vig, Komal [1 ]
Dennis, Vida A. [1 ]
Singh, Shree R. [1 ]
机构
[1] Alabama State Univ, Ctr NanoBiotechnol Res, Montgomery, AL 36104 USA
[2] Auburn Univ, Res Instrumentat Facil, Auburn, AL 36849 USA
来源
INTERNATIONAL JOURNAL OF NANOMEDICINE | 2013年 / 8卷
关键词
pHEMA plus chitosan nanoparticles; nonviral vector; RSV-DNA vaccine; RESPIRATORY-SYNCYTIAL-VIRUS; CORE-SHELL NANOPARTICLES; GOLD NANOPARTICLES; MOUSE MUSCLE; PLASMID DNA; CHITOSAN; VACCINE; METHACRYLATE); DEGRADATION; EXPRESSION;
D O I
10.2147/IJN.S43168
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The transport of DNA into eukaryotic cells is minimal because of the cell membrane barrier, and this limits the application of DNA vaccines, gene silencing, and gene therapy. Several available transfection reagents and techniques have been used to circumvent this problem. Alternatively, nonviral nanoscale vectors have been shown to bypass the eukaryotic cell membrane. In the present work, we developed a unique nanomaterial, pHEMA+chitosan nanospheres (PCNSs), which consisted of poly(2-hydroxyethyl methacrylate) nanospheres surrounded by a chitosan cationic shell, and we used this for encapsulation of a respiratory syncytial virus (RSV)-F gene construct (a model for a DNA vaccine). The new nanomaterial was capable of transfecting various eukaryotic cell lines without the use of a commercial transfection reagent. Using transmission electron microscopy, (TEM), fluorescence activated cell sorting (FACS), and immunofluorescence, we clearly demonstrated that the positively charged PCNSs were able to bind to the negatively charged cell membrane and were taken up by endocytosis, in Cos-7 cells. Using quantitative polymerase chain reaction (qPCR), we also evaluated the efficiency of transfection achieved with PCNSs and without the use of a liposomal-based transfection mediator, in Cos-7, HEp-2, and Vero cells. To assess the transfection efficiency of the PCNSs in vivo, these novel nanomaterials containing RSV-F gene were injected intramuscularly into BALB/c mice, resulting in high copy number of the transgene. In this study, we report, for the first time, the application of the PCNSs as a nanovehicle for gene delivery in vitro and in vivo.
引用
收藏
页码:1403 / 1415
页数:13
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