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Comparative evaluation of gene delivery devices in primary cultures of rat hepatic stellate cells and rat myofibroblasts

机译:大鼠肝星状细胞和大鼠成纤维细胞原代培养中基因传递装置的比较评价

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Background The hepatic stellate cell is the primary cell type responsible for the excessive formation and deposition of connective tissue elements during the development of hepatic fibrosis in chronically injured liver. Culturing quiescent hepatic stellate cells on plastic causes spontaneous activation leading to a myofibroblastic phenotype similar to that seen in vivo . This provides a simple model system for studying activation and transdifferentiation of these cells. The introduction of exogenous DNA into these cells is discussed controversially mainly due to the lack of systematic analysis. Therefore, we examined comparatively five nonviral, lipid-mediated gene transfer methods and adenoviral based infection, as potential tools for efficient delivery of DNA to rat hepatic stellate cells and their transdifferentiated counterpart, i.e. myofibroblasts. Transfection conditions were determined using enhanced green fluorescent protein as a reporter expressed under the transcriptional control of the human cytomegalovirus immediate early gene 1 promoter/enhancer. Results With the use of chemically enhanced transfection methods, the highest relative efficiency was obtained with FuGENE?6 gene mediated DNA transfer. Quantitative evaluation of representative transfection experiments by flow cytometry revealed that approximately 6% of the rat hepatic stellate cells were transfected. None of the transfection methods tested was able to mediate gene delivery to rat myofibroblasts. To analyze if rat hepatic stellate cells and myofibroblasts are susceptible to adenoviral infection, we have inserted the transgenic expression cassette into a recombinant adenoviral type 5 genome as replacement for the E1 region. Viral particles of this replication-deficient Ad5-based reporter are able to infect 100% of rat hepatic stellate cells and myofibroblasts, respectively. Conclusions Our results indicate that FuGENE?6-based methods may be optimized sufficiently to offer a feasible approach for gene transfer into rat hepatic stellate cells. The data further demonstrate that adenoviral mediated transfer is a promising approach for gene delivery to these hepatic cells.
机译:背景技术肝星状细胞是主要细胞类型,负责在慢性受伤的肝细胞肝纤维化发展过程中结缔组织元素的过度形成和沉积。在塑料上培养静止的肝星状细胞会自发激活,导致肌纤维母细胞表型与体内相似。这提供了用于研究这些细胞的激活和转分化的简单模型系统。引起争议的讨论主要是由于缺乏系统的分析,将外源DNA引入这些细胞。因此,我们比较了五种非病毒的,脂质介导的基因转移方法和基于腺病毒的感染,将其作为有效地将DNA传递至大鼠肝星状细胞及其转分化的对应物即成肌纤维细胞的潜在工具。使用增强的绿色荧光蛋白作为在人巨细胞病毒立即早期基因1启动子/增强子的转录控制下表达的报道基因来确定转染条件。结果通过使用化学增强的转染方法,FuGENE?6基因介导的DNA转移获得了最高的相对效率。通过流式细胞术对代表性转染实验的定量评估表明,大约6%的大鼠肝星状细胞已被转染。测试的所有转染方法均不能介导基因传递至大鼠成肌纤维细胞。为了分析大鼠肝星状细胞和成纤维细胞是否易受腺病毒感染,我们已将转基因表达盒插入重组腺病毒5型基因组中,以替代E1区。这种复制缺陷的基于Ad5的报告基因的病毒颗粒能够分别感染100%的大鼠肝星状细胞和成肌纤维细胞。结论我们的结果表明,基于FuGENEβ6的方法可能经过充分优化,可以为将基因转移到大鼠肝星状细胞中提供可行的方法。数据进一步证明,腺病毒介导的转移是将基因递送至这些肝细胞的有前途的方法。

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