BMP2 gene delivery to bone mesenchymal stem cell by chitosan-g-PEI nonviral vector

被引:3
作者
Jianhui Yue
Jun Wu
Di Liu
Xiaoli Zhao
William W Lu
机构
[1] Institute of Biomedicine and Biotechnology,Center for Human Tissues and Organs Degeneration
[2] Shenzhen Institutes of Advanced Technology,Department of Orthopaedic and Traumatology
[3] Chinese Academy of Sciences,Department of Pharmacology
[4] The University of Hong Kong,Shenzhen Key Laboratory of Marine Biomedical Materials
[5] Harbin Medical University,undefined
[6] Shenzhen Institutes of Advanced Technology,undefined
[7] Chinese Academy of Sciences,undefined
来源
Nanoscale Research Letters | 2015年 / 10卷
关键词
Chitosan; Polyethylenimine; Stem cell; Osteogenic differentiation; Gene delivery;
D O I
暂无
中图分类号
学科分类号
摘要
Nanotechnology has made a significant impact on the development of nanomedicine. Nonviral vectors have been attracting more attention for the advantage of biosafety in gene delivery. Polyethylenimine (PEI)-conjugated chitosan (chitosan-g-PEI) emerged as a promising nonviral vector and has been demonstrated in many tumor cells. However, there is a lack of study focused on the behavior of this vector in stem cells which hold great potential in regenerative medicine. Therefore, in this study, in vitro gene delivering effect of chitosan-g-PEI was investigated in bone marrow stem cells. pIRES2-ZsGreen1-hBMP2 dual expression plasmid containing both the ZsGreen1 GFP reporter gene and the BMP2 functional gene was constructed for monitoring the transgene expression level. Chitosan-g-PEI-mediated gene transfer showed 17.2% of transfection efficiency and more than 80% of cell viability in stem cells. These values were higher than that of PEI. The expression of the delivered BMP2 gene in stem cells enhanced the osteogenic differentiation. These results demonstrated that chitosan-g-PEI is capable of applying in delivering gene to stem cells and providing potential applications in stem cell-based gene therapy.
引用
收藏
相关论文
共 258 条
[1]  
Lo KW(2012)Studies of bone morphogenetic protein-based surgical repair Adv Drug Deliv Rev 64 1277-91
[2]  
Ulery BD(2010)Nanotechnology in drug delivery and tissue engineering: from discovery to applications Nano Lett 10 3223-30
[3]  
Ashe KM(2014)Complications with the use of bone morphogenetic protein 2 (BMP-2) in spine surgery Spine J 14 552-9
[4]  
Laurencin CT(2013)Clinical applications of growth factors in bone injuries: experience with BMPs Injury 44 S34-9
[5]  
Shi JJ(2009)Progress and prospects: genetic treatments for disorders of bones and joints Gene Ther 16 944-52
[6]  
Votruba AR(2012)Gene therapy approaches to regenerating bone Adv Drug Deliv Rev 64 1320-30
[7]  
Farokhzad OC(2013)Gene therapy clinical trials worldwide to 2012 - an update J Gene Med 15 65-77
[8]  
Langer R(2013)Evaluating risks of insertional mutagenesis by DNA transposons in gene therapy Transl Res 161 265-83
[9]  
Tannoury CA(2011)Non-viral nucleic acid delivery: key challenges and future directions Curr Drug Deliv 8 235-44
[10]  
An HS(2010)Progress and prospects: nuclear import of nonviral vectors Gene Ther 17 439-47