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聚乙烯亚胺介导的睡美人转座子递送后,小鼠肺部的终身报告基因成像。

Lifelong reporter gene imaging in the lungs of mice following polyethyleneimine-mediated sleeping-beauty transposon delivery.

机构信息

Institute of Biomedical Materials and Engineering, and Center of Excellence for Cancer Research, Taipei Medical University, 250 Wu-Hsing Street, Taipei, Taiwan.

出版信息

Biomaterials. 2011 Mar;32(7):1978-85. doi: 10.1016/j.biomaterials.2010.11.026. Epub 2010 Dec 17.

Abstract

Polyethyleneimine (PEI) is a cationic polymer that is effective in gene delivery in vivo. Plasmid DNA incorporating the Sleeping-Beauty (SB) transposon has been shown to induce long-term transgene expression in mouse lungs after PEI-mediated delivery. In the current report, we followed the reporter gene expression mediated by PEI/SB delivery in lungs of mice using the non-invasive bioluminescent imaging (BLI) technology. After delivery, the reporter gene signal showed a rapid decay in the first two weeks to a nearly undetectable level, but then the signal augmented gradually in the following weeks and finally reached a stable level that maintained until the natural death of animals. The stabilization of transgene expression is associated with the multiplication of a small number of PEI/SB-labeled alveolar cells, which proliferated both under normal conditions and in response to acute local injury for epithelia repair, and may play a role in long-term homeostatic maintenance in alveoli. The data presented here suggests that systemic delivery of PEI/SB induces stable transfection specifically in a small population of alveolar progenitor cells. The technique provides a promising platform for future research in distal lung biology and tissue regenerative therapy.

摘要

聚乙烯亚胺(PEI)是一种阳离子聚合物,在体内基因传递中非常有效。已经证明,在体内用 PEI 介导传递后,整合了睡眠美人(SB)转座子的质粒 DNA 可诱导小鼠肺部的长期转基因表达。在本报告中,我们使用非侵入性生物发光成像(BLI)技术来研究 PEI/SB 传递在小鼠肺部介导的报告基因表达。传递后,报告基因信号在前两周迅速衰减至几乎无法检测的水平,但随后在接下来的几周内逐渐增加,最终达到稳定水平,并持续到动物自然死亡。转基因表达的稳定与一小部分被 PEI/SB 标记的肺泡细胞的增殖有关,这些细胞在正常情况下和响应上皮修复的急性局部损伤时都增殖,可能在肺泡的长期动态平衡维持中发挥作用。这里呈现的数据表明,PEI/SB 的全身传递特异性诱导一小部分肺泡祖细胞的稳定转染。该技术为远端肺生物学和组织再生治疗的未来研究提供了一个有前途的平台。

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