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首页> 外文期刊>Biological Procedures Online >In Vivo Imaging of Far-red Fluorescent Proteins after DNA Electrotransfer to Muscle Tissue
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In Vivo Imaging of Far-red Fluorescent Proteins after DNA Electrotransfer to Muscle Tissue

机译:DNA电转移到肌肉组织后远红外荧光蛋白的体内成像。

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DNA electrotransfer to muscle tissue yields long-term, high levels of gene expression; showing great promise for future gene therapy. We want to characterize the novel far-red fluorescent protein Katushka as a marker for gene expression using time domain fluorescence in vivo imaging. Highly efficient transgenic expression was observed after DNA electrotransfer with 100-fold increase in fluorescent intensity. The fluorescent signal peaked 1 week after transfection and returned to background level within 4 weeks. Katushka expression was not as stable as GFP expression, which was detectable for 8 weeks. Depth and 3D analysis proved that the expression was located in the target muscle. In vivo bio-imaging using the novel Katushka fluorescent protein enables excellent evaluation of the transfection efficacy, and spatial distribution, but lacks long-term stability.
机译:将DNA电转移到肌肉组织上可产生长期的高水平基因表达。对未来的基因治疗显示出巨大的希望。我们希望将新的远红外荧光蛋白Katushka表征为使用时域荧光体内成像的基因表达标记。 DNA电转移后观察到高效的转基因表达,荧光强度增加了100倍。转染后1周荧光信号达到峰值,并在4周内恢复到背景水平。 Katushka表达不如GFP表达稳定,可检测8周。深度和3D分析证明该表达位于目标肌肉中。使用新型Katushka荧光蛋白的体内生物成像能够出色地评估转染效果和空间分布,但缺乏长期稳定性。

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