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Ex-vivo evaluation of gene therapy vectors in human pancreatic (cancer) tissue slices

机译:人体胰腺(癌)组织切片中基因治疗载体的离体评估

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摘要

AIM: To culture human pancreatic tissue obtained from small resection specimens as a pre-clinical model for examining virus-host interactions. METHODS: Human pancreatic tissue samples (malignant and normal) were obtained from surgical specimens and processed immediately to tissue slices. Tissue slices were cultured ex vivo for 1-6 d in an incubator using 95% O-2. Slices were subsequently analyzed for viability and morphology. In addition the slices were incubated with different viral vectors expressing the reporter genes GFP or DsRed. Expression of these reporter genes was measured at 72 h after infection. RESULTS: With the Krumdieck tissue slicer, uniform slices could be generated from pancreatic tissue but only upon embedding the tissue in 3% low melting agarose. Immunohistological examination showed the presence of all pancreatic cell types. Pancreatic normal and cancer tissue slices could be cultured for up to 6 cl, while retaining viability and a moderate to good morphology. Reporter gene expression indicated that the slices could be infected and transduced efficiently by adenoviral vectors and by adeno associated viral vectors, whereas transduction with lentiviral vectors was limited. For the adenoviral vector, the transduction seemed limited to the peripheral layers of the explants. CONCLUSION: The presented system allows reproducible processing of minimal amounts of pancreatic tissue into slices uniform in size, suitable for pre-clinical evaluation of gene therapy vectors. (C) 2009 The WIG Press and Baishideng. All rights reserved
机译:目的:培养从小型切除标本中获得的人胰腺组织,作为检查病毒与宿主相互作用的临床前模型。方法:从手术标本中获得人胰腺组织样本(恶性和正常),并立即处理成组织切片。组织切片在培养箱中使用95%O-2离体培养1-6天。随后分析切片的生存力和形态。另外,将切片与表达报道基因GFP或DsRed的不同病毒载体一起温育。在感染后72小时测量这些报道基因的表达。结果:使用Krumdieck组织切片机,可以将胰腺组织包埋在3%低熔点琼脂糖中,从而产生均匀的切片。免疫组织学检查显示所有胰腺细胞类型的存在。胰腺正常和癌组织切片可以培养长达6 cl,同时保持活力和中等至良好的形态。报告基因的表达表明,切片可以被腺病毒载体和腺相关病毒载体有效地感染和转导,而慢病毒载体的转导受到限制。对于腺病毒载体,转导似乎仅限于外植体的外围层。结论:提出的系统允许将最小量的胰腺组织可再现地加工成大小均一的切片,适用于基因治疗载体的临床前评估。 (C)2009 WIG出版社和白石登。版权所有

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