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Successful genetic modification of porcine spermatogonial stem cells via an electrically responsive Au nanowire injector

机译:通过电响应Au纳米线喷射器成功地遗传修饰猪精肽干细胞

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Transgenic pigs are quite useful in many biomedical fields, such as xenotransplantation research and the production of biopharmaceutical materials. The genetic transformation of porcine spermatogonial stem cells (pSSCs) followed by differentiation into mature spermatozoa enables the effective production of transgenic pigs. Improving the transfection efficiency of pSSCs, however, has been much desired. Herein, we report the efficient genetic modification of pSSCs by using an electrically responsive Au nanowire injector (E-R Au NWI). This is the first study that shows an exogenous gene is directly delivered into the nucleus of a pSSC by using a 1-dimensional nanomaterial and then successfully expressed to produce a protein. The E-R Au NWI interfaced noninvasively with the nucleus of the pSSC, and the pEGFP-N1 plasmid was delivered by the application of an electrical stimulus without cell damage. Compared to the results of conventional nonviral vector-based gene delivery methods such as jetPEI, Lipofectamine, and electroporation, the E-R Au NWI-based method improved the pSSC transfection efficiency by at least 6.7-fold and even up to 46.7-fold. Furthermore, we successfully obtained transgenic pSSCs containing the human bone morphogenetic protein 2 gene by using E-R Au NWIs. This result suggests that the E-R Au NWI enables the efficient genetic modification of pSSCs and can be employed to produce diverse kinds of transgenic pigs.
机译:转基因猪在许多生物医学领域非常有用,例如异种持续研究和生物制药材料的生产。猪精肽干细胞(PSSCs)的遗传转化,然后分化为成熟精子,使得能够有效地生产转基因猪。然而,提高PSSCs的转染效率已经考虑了很大。在此,我们通过使用电响应性Au纳米线注射器(E-R Au NWI)报告PSSCs的有效遗传修饰。这是通过使用1维纳米材料将外源基因直接递送到PSSC的细胞核中的第一研究,然后成功表达以产生蛋白质。通过施加电刺激而没有细胞损伤,通过施加电刺激来互相界面与PSSC的核相邻的E-R Au NWI。与常规非血管载体的基因递送方法的结果相比,如Jetpei,Lipofectamine和电穿孔,基于E-R Au NWI的方法将PSSC转染效率提高至少6.7倍,甚至高达46.7倍。此外,我们通过使用E-R Au NWIS成功地获得了含有人骨形态发生蛋白2基因的转基因PSSCs。该结果表明E-R Au NWI能够实现PSSC的有效遗传修饰,并且可以用于产生各种转基因猪。

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