首页> 外文期刊>Journal of vascular surgery >Genetic engineering of stent grafts with a highly efficient pseudotyped retroviral vector.
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Genetic engineering of stent grafts with a highly efficient pseudotyped retroviral vector.

机译:使用高效假型逆转录病毒载体进行支架移植物的基因工程。

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摘要

PURPOSE: The purpose of this study was first to compare the gene transfer efficiency of amphotrophic murine leukemia viral vector (ampho-MuLV) with the efficiency of MuLV pseudotyped with the vesicular stomatitis virus G glycoprotein (VSVG-MuLV) in tissue of vascular origin. The second purpose of this study was to determine cell retention after the implantation of genetically engineered stent grafts. METHODS: Gene transfer efficiency was ascertained with the b-galactosidase assay. The target tissues included endothelial cells (ECs), smooth muscle cells (SMCs), and human saphenous veins (HSVs). Polyurethane stent grafts were suffused with lac Z-transduced ECs and SMCs that were harvested from porcine jugular vein. The grafts were implanted into the iliac artery of each pig whose jugular vein had been harvested. Cell retention was analyzed at 1 and 4 weeks with X-Gal staining. RESULTS: VSVG-MuLV transduction efficiency exceeded that of ampho-MuLV in human ECs (VSVG-MuLV, n = 24, 89% +/- 6%; ampho-MuLV, n = 18, 14% +/- 6%; P <. 001), human SMCs (VSVG-MuLV, n = 5, 92% +/- 3%; ampho-MuLV, n = 4, 17% +/- 2%; P <.001), pig ECs (VSVG-MuLV, n = 4, 81% +/- 2%; ampho-MuLV, n = 4, 13% +/- 3%; P <.001), and pig SMCs (VSVG-MuLV, n = 5, 89% +/- 3%; ampho-MuLV, n = 4, 16% +/- 1%; P <.001). As much as a 10-fold higher transduction efficiency was observed with VSVG-MuLV in HSVs. After the stent graft implantation, the engineered cells were retained and proliferated on the stent membrane, with ingrowth into the underlying intima. CONCLUSION: VSVG-MuLV significantly increased the gene transfer efficiency in vascular SMCs and ECs and in organ-cultured HSVs. The cells were retained and proliferated on stent grafts for the short term in the pig.
机译:目的:本研究的目的是首先比较两性鼠白血病病毒载体(ampho-MuLV)的基因转移效率与用血管性口炎病毒G糖蛋白(VSVG-MuLV)假型的MuLV在血管起源组织中的转移效率。这项研究的第二个目的是确定基因工程支架植入物植入后的细胞保留。方法:通过b-半乳糖苷酶测定确定基因转移效率。目标组织包括内皮细胞(EC),平滑肌细胞(SMC)和人隐静脉(HSV)。聚氨基甲酸酯支架移植物充满了从猪颈静脉收获的lac Z转导的EC和SMC。移植物被植入每只已摘取颈静脉的猪的artery动脉中。用X-Gal染色在第1和第4周分析细胞保留。结果:VSVG-MuLV在人类EC中的转导效率超过了ampho-MuLV(VSVG-MuLV,n = 24,89%+/- 6%; ampho-MuLV,n = 18,14%+/- 6%; P <.001),人SMC(VSVG-MuLV,n = 5,92%+/- 3%; ampho-MuLV,n = 4,17%+ /-2%; P <.001),猪ECs(VSVG -MuLV,n = 4,81%+/- 2%; ampho-MuLV,n = 4,13%+/- 3%; P <.001),以及猪SMC(VSVG-MuLV,n = 5,89) %+/- 3%; ampho-MuLV,n = 4,16%+/- 1%; P <.001)。使用HSVG-MuLV在HSV中观察到高达10倍的高转导效率。支架移植物植入后,工程细胞被保留并在支架膜上增殖,并向内生长到下面的内膜中。结论:VSVG-MuLV显着提高了血管SMC,EC和器官培养的HSV中的基因转移效率。在猪中短期内,细胞被保留并在支架移植物上增殖。

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