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Efficient Gene Transduction of Dispersed Islet Cells in Culture Using Fiber-Modified Adenoviral Vectors

机译:使用纤维修饰的腺病毒载体对分散的胰岛细胞进行高效基因转导

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摘要

To establish novel islet-based therapies, our group has recently developed technologies for creating functional neo-islet tissues in the subcutaneous space by transplanting monolithic sheets of dispersed islet cells (islet cell sheets). Improving cellular function and viability are the next important challenges for enhancing the therapeutic effects. This article describes the adenoviral vector-mediated gene transduction of dispersed islet cells under culture conditions. Purified pancreatic islets were obtained from Lewis rats and dissociated into single islet cells. Cells were plated onto laminin-5-coated temperature-responsive polymer poly(N-isopropylacrylamide)-immobilized plastic dishes. At 0 h, islet cells were infected for 1 h with either conventional type 5 adenoviral vector (Ad-CA-GFP) or fiber-modified adenoviral vector (AdK7-CA-GFP) harboring a polylysine (K7) peptide in the C terminus of the fiber knob. We investigated gene transduction efficiency at 48 h after infection and found that AdK7-CA-GFP yielded higher transduction efficiencies than Ad-CA-GFP at a multiplicity of infection (MOI) of 5 and 10. For AdK7-CA-GFP at MOI = 10, 84.4 ± 1.5% of islet cells were found to be genetically transduced without marked vector infection-related cellular damage as determined by viable cell number and lactate dehydrogenase (LDH) release assay. After AdK7-CA-GFP infection at MOI = 10, cells remained attached and expanded to nearly full confluency, showing that this adenoviral infection protocol is a feasible approach for creating islet cell sheets. We have shown that dispersed and cultured islet cells can be genetically modified efficiently using fiber-modified adenoviral vectors. Therefore, this gene therapy technique could be used for cellular modification or biological assessment of dispersed islet cells.
机译:为了建立新的基于胰岛的疗法,我们小组最近开发了通过移植散布的胰岛细胞的整体片(胰岛细胞片)在皮下空间中创建功能性新胰岛组织的技术。改善细胞功能和生存能力是增强治疗效果的下一个重要挑战。本文介绍了在培养条件下腺病毒载体介导的分散胰岛细胞的基因转导。从Lewis大鼠获得纯化的胰岛,并分离成单个胰岛细胞。将细胞铺在层粘连蛋白5涂层的温度响应聚合物(N-异丙基丙烯酰胺)固定的塑料皿上。在0小时时,胰岛细胞用常规5型腺病毒载体(Ad-CA-GFP)或纤维修饰的腺病毒载体(AdK7-CA-GFP)在其C末端带有多赖氨酸(K7)肽感染1小时。光纤旋钮。我们研究了感染后48小时的基因转导效率,发现在感染复数(MOI)为5和10时,AdK7-CA-GFP的转导效率高于Ad-CA-GFP。通过活细胞数和乳酸脱氢酶(LDH)释放测定,发现10、84.4±1.5%的胰岛细胞被遗传转导,而没有明显的与载体感染相关的细胞损伤。在MOI == 10的AdK7-CA-GFP感染后,细胞保持附着并扩展到几乎完全汇合,表明该腺病毒感染方案是创建胰岛细胞片的可行方法。我们已经表明,可以使用纤维修饰的腺病毒载体对分散和培养的胰岛细胞进行有效的遗传修饰。因此,该基因治疗技术可以用于分散的胰岛细胞的细胞修饰或生物学评估。

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