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New non-viral method for gene transfer into primary cells.

机译:基因转移到原代细胞的新的非病毒方法。

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摘要

The availability of genetically altered cells is an essential prerequisite for many scientific and therapeutic applications including functional genomics, drug development, and gene therapy. Unfortunately, the efficient gene transfer into primary cells is still problematic. In contrast to transfections of most cell lines, which can be successfully performed using a variety of methods, the introduction of foreign DNA into primary cells requires a careful selection of gene transfer techniques. Whereas viral strategies are time consuming and involve safety risks, non-viral methods proved to be inefficient for most primary cell types. The Nucleofector technology is a novel gene transfer technique designed for primary cells and hard-to-transfect cell lines. This non-viral gene transfer method is based on a cell type specific combination of electrical parameters and solutions. In this report, we show efficient transfer of DNA expression vectors and siRNA oligonucleotides into a variety of primary cell types from different species utilizing the Nucleofector technology, including human B-CLL cells, human CD34+ cells, human lymphocytes, rat cardiomyocytes, human, porcine, and bovine chondrocytes, and rat neurons.
机译:基因改变细胞的可用性是许多科学和治疗应用(包括功能基因组学,药物开发和基因治疗)的必要前提。不幸的是,有效基因转移到原代细胞中仍然是有问题的。与可以使用多种方法成功进行转染的大多数细胞系相比,将外源DNA引入原代细胞需要仔细选择基因转移技术。尽管病毒策略耗时且涉及安全风险,但事实证明,非病毒方法对于大多数原代细胞类型而言效率低下。 Nucleofector技术是专为原代细胞和难以转染的细胞系设计的新型基因转移技术。这种非病毒基因转移方法基于特定类型的电参数和溶液的组合。在本报告中,我们显示了利用Nucleofector技术将DNA表达载体和siRNA寡核苷酸有效转移到来自不同物种的多种原代细胞类型中,包括人类B-CLL细胞,人类CD34 +细胞,人类淋巴细胞,大鼠心肌细胞,人类,猪,牛软骨细胞和大鼠神经元。

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