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首页> 外文期刊>Basic Research in Cardiology: Official Journal of the German Association of Cardiovascular Research >Lentiviral vectors for delivery of genes into neonatal and adult ventricular cardiac myocytes in vitro and in vivo.
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Lentiviral vectors for delivery of genes into neonatal and adult ventricular cardiac myocytes in vitro and in vivo.

机译:慢病毒载体,用于在体外和体内将基因传递到新生儿和成人心室心肌细胞中。

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摘要

Vectors based on lentiviruses such as human immunodeficiency virus (HIV) type-1 have many advantages for gene therapy, including the ability to infect non-dividing cells, long-term transgene expression and the absence of induction of an inflammatory/immune response. This study was initiated to determine whether lentiviruses would efficiently transfer genes to both neonatal and adult cardiac cells in culture and, by direct injection, to the heart in vivo. A three-plasmid expression system, including a packaging defective helper construct, a plasmid coding for a heterologous (VSV-G) envelope protein and a vector construct harboring reporter genes - E-GFP (enhanced green fluorescent protein) and puro (puromycin-resistance protein) was used to generate pseudotyped HIV-1 particles by transient transfection of human embryonic kidney 293T cells. We demonstrated efficient gene transfer into neonatal and adult cardiac myocytes in vitro and identified conditions in which virtually 100 % of cultured neonatal and 70 % of adult cardiac myocytes express the reporter gene. Transduction of adult cardiac myocytes with high titre lentiviral vectors did not affect the cell number, morphology or viability compared to untransduced cells. We delivered HIV-1-based vectors to the intact heart by direct injection. Hearts transduced with pseudotyped HIV-1 vectors showed levels of transgene expression comparable to that achieved by adenovirus vectors. This study demonstrates for the first time that lentivirus-based vectors can successfully transduce adult cardiomyocytes both in vitro and in vivo, and opens up the prospect of lentivirus-based vectors becoming an important gene delivery system in the cardiovascular field.
机译:基于慢病毒(例如1型人类免疫缺陷病毒(HIV))的载体在基因治疗方面具有许多优势,包括感染非分裂细胞的能力,长期转基因表达以及不诱导炎症/免疫反应。这项研究的开始是为了确定慢病毒是否能有效地将基因转移到培养的新生儿和成年心脏细胞中,以及通过直接注射体内转移到心脏中。三质粒表达系统,包括包装缺陷的辅助构建体,编码异源(VSV-G)包膜蛋白的质粒和带有报告基因的载体构建体-E-GFP(增强型绿色荧光蛋白)和puro(嘌呤霉素抗性)通过瞬时转染人胚胎肾293T细胞来产生假型HIV-1颗粒。我们证明了有效的基因体外转移到新生儿和成年心肌细胞中,并确定了条件,其中几乎100%的培养新生儿和70%的成年心肌细胞表达报告基因。与未转导的细胞相比,用高滴度的慢病毒载体转导成年心肌细胞不会影响细胞数量,形态或活力。我们通过直接注射将基于HIV-1的载体运送到完整的心脏。用假型HIV-1载体转导的心脏显示的转基因表达水平可与腺病毒载体相比。这项研究首次证明了基于慢病毒的载体可以在体外和体内成功转导成年心肌细胞,并开​​辟了基于慢病毒的载体成为心血管领域重要基因递送系统的前景。

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