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通过电穿孔法将基于质粒的基因导入小鼠骨骼肌。

Plasmid-based gene transfer in mouse skeletal muscle by electroporation.

作者信息

Schertzer Jonathan D, Lynch Gordon S

机构信息

Basic and Clinical Myology Laboratory, Department of Physiology, The University of Melbourne, Victoria, Australia.

出版信息

Methods Mol Biol. 2008;433:115-25. doi: 10.1007/978-1-59745-237-3_7.

Abstract

Advances in molecular biology and genetics have provided an abundance of descriptive biological data. Ascribing physiologic roles to these data is an important task to translate this information into improvements in human health. Non-viral transgene delivery of a transgene is a promising approach for defining the physiologic role of a specific protein in vivo. This methodology also has therapeutic potential for the treatment of various diseases. Plasmid DNA injection followed by controlled electric pulses across the injection site (i.e., electroporation or electrotransfer) can dramatically increase transgene expression in skeletal muscle, but in some methods can result in local tissue damage. Muscle damage and subsequent repair processes may confound the measurement of physiological, biochemical, and molecular properties for a given experiment. In addition, it is essential to eliminate damage to existing muscle fibers if such procedures are to be used for the treatment of myopathies and muscle wasting conditions. The measurement of muscle contractile parameters (i.e., function) is an important end-point for assessing the role of ectopically delivered proteins in vivo. As such, methodologies that allow the delivery of a transgene to levels that have a physiological effect and do not compromise muscle function will aid in the characterization of the role of specific proteins in vivo.

摘要

分子生物学和遗传学的进展提供了大量描述性生物学数据。将生理作用赋予这些数据是将此信息转化为人类健康改善的一项重要任务。转基因的非病毒转基因递送是在体内确定特定蛋白质生理作用的一种有前景的方法。这种方法学对各种疾病的治疗也具有治疗潜力。注射质粒DNA,随后在注射部位施加可控电脉冲(即电穿孔或电转染),可显著增加骨骼肌中的转基因表达,但在某些方法中可能导致局部组织损伤。肌肉损伤及随后的修复过程可能会混淆给定实验中生理、生化和分子特性的测量。此外,如果要将此类程序用于治疗肌病和肌肉萎缩病症,消除对现有肌纤维的损伤至关重要。肌肉收缩参数(即功能)的测量是评估体内异位递送蛋白质作用的一个重要终点。因此,能够将转基因递送至具有生理效应且不损害肌肉功能水平的方法,将有助于在体内表征特定蛋白质的作用。

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