高效转导癌症干细胞的方法。

Journal of cancer stem cell research Pub Date : 2014-01-01 Epub Date: 2014-12-01 DOI:10.14343/JCSCR.2014.2e1008
Kiera Walker, Anita Hjelmeland
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引用次数: 0

摘要

通过引入 cDNA 进行异位基因表达和通过 RNA 干扰进行基因沉默,都有助于阐明正常和病理状态下的分子通路。由于某些原代细胞和成熟细胞的转染效率较低,基于慢病毒的高感染率表达系统可以改善实验设计。例如,胶质母细胞瘤细胞,尤其是癌症干细胞(CSC)部分很难转染,但却适合病毒感染。在CSCs中更多地利用慢病毒表达cDNA和shRNA可能会受到技术挑战的限制,包括去除促分化胎牛血清(FBS)。因此,我们生成了一种能在 CSC 培养基中增殖并高效产生病毒的 293Ts 亚系,命名为 CSC293Ts。我们以胶质母细胞瘤为模型,提供了生成 CSC293Ts 和生产用于 CSC 感染的慢病毒的详细方案。我们的数据表明,来自 CSC293Ts 的无血清培养基可持续产生 80% 以上的感染率,而无需浓缩病毒。我们相信,这里提供的详细方案可适用于多种细胞类型,具有广泛的实用性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Method for Efficient Transduction of Cancer Stem Cells.

Method for Efficient Transduction of Cancer Stem Cells.

Method for Efficient Transduction of Cancer Stem Cells.

Ectopic gene expression through introduction of cDNA and gene silencing by RNA interference each facilitate the elucidation of molecular pathways in both normal and pathologic states. As transfection efficiency in some primary and established cells is low, lentivirus based expression systems with high infection rates can improve experimental design. For example, glioblastoma cells and particularly the cancer stem cell (CSC) fraction can be difficult to transfect but are amenable to viral infection. Greater utilization of lentivirus for expression of cDNA and shRNA in CSCs may be limited due to technical challenges, including elimination of pro-differentiating fetal bovine serum (FBS). We therefore generated a subline of 293Ts that can proliferate and efficiently produce virus in CSC media, designated CSC293Ts. We provide detailed protocols for the generation of CSC293Ts and for the production of lentivirus for CSC infection using glioblastoma as a model. Our data demonstrate that serum free media from CSC293Ts consistently produces greater than 80% infection rates without virus concentration. We believe that the detailed protocols provided here can be adapted for multiple cell types for broad utility.

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