Efficient gene transfer into zebrafish skeletal muscle by intramuscular injection of plasmid DNA.

J H Tan, W K Chan
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Abstract

The ability of zebrafish skeletal muscles to internalize and express plasmid DNA was demonstrated using pCMVCAT1, a chloramphenicol acetyltransferase (CAT) construct driven by the human cytomegalovirus immediate early (CMV-IE) promoter. We found that CAT activity was correlated to the amount of plasmid DNA injected, with maximal expression at 5 micrograms of pCMVCAT1. CAT activity was also shown to increase steadily over the first seven days after injection, with high levels of CAT expression persisting up to one year. Intramuscular injection of CAT constructs driven by other viral promoters also resulted in high levels of CAT activity. Histochemical localization using a CMV beta-galactosidase construct confirmed that only myofibers at the site of injection expressed beta-galactosidase enzyme. The persistence and strong expression of injected plasmid constructs suggest that zebrafish may be a simple and readily accessible system for direct muscle injection studies.

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肌内注射质粒DNA将基因高效转入斑马鱼骨骼肌。
利用pCMVCAT1证明了斑马鱼骨骼肌内化和表达质粒DNA的能力,pCMVCAT1是一种由人巨细胞病毒即时早期(CMV-IE)启动子驱动的氯霉素乙酰转移酶(CAT)构建物。我们发现CAT活性与质粒DNA注入量相关,在5微克pCMVCAT1时表达量最大。在注射后的头7天内,CAT活性也稳步增加,高水平的CAT表达持续长达一年。肌肉内注射由其他病毒启动子驱动的CAT构建物也导致高水平的CAT活性。使用CMV β -半乳糖苷酶构建的组织化学定位证实,只有注射部位的肌纤维表达β -半乳糖苷酶。注射质粒结构的持久性和强表达表明,斑马鱼可能是一个简单而容易获得的直接肌肉注射研究系统。
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