摘要
体内电穿孔是把核酸导入到目标组织的最有效的方法之一,因此在基因治疗的研究中起着举足轻重的作用。对啮齿动物的大脑体内电穿孔常常涉及到注射核酸到脑室或特定区域,然后对正确的区域施以适当的电场。更好的了解电穿孔在啮齿动物的大脑的研究进展可能会进一步促进一些脑功能障碍的基因治疗研究。为此,我们简要地总结了其优点,运用体内电穿孔将核酸转移到啮齿动物的大脑内的过程和最新进展。
关键词: 双向电穿孔,脑功能障碍,基因治疗,体内电穿孔, 啮齿类动物大脑
Current Gene Therapy
Title:Progress of In Vivo Electroporation in the Rodent Brain
Volume: 14 Issue: 3
Author(s): Xue-Feng Ding, De-Lin Ma, Qiang Zhang, Wei Peng, Ming Fan and William Z. Suo
Affiliation:
关键词: 双向电穿孔,脑功能障碍,基因治疗,体内电穿孔, 啮齿类动物大脑
摘要: In vivo electroporation is one of the most efficient methods for introducing the nucleic acids into the target tissues, and thus plays a pivotal role in gene therapeutic studies. In vivo electroporation in rodent brains is often involved in injection of nucleic acids into the brain ventricle or specific area and then applying appropriate electrical field to the correct area. Better understanding of the progress of electroporation in rodent brain may further facilitate gene therapeutic studies on some brain disorders. For this purpose, we briefly summarized the advantages, the procedures and recent progress of transferring nucleic acids into the rodent brain using in vivo electroporation.
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Ding Xue-Feng, Ma De-Lin, Zhang Qiang, Peng Wei, Fan Ming and Suo Z. William, Progress of In Vivo Electroporation in the Rodent Brain, Current Gene Therapy 2014; 14 (3) . https://dx.doi.org/10.2174/1566523214666140424145305
DOI https://dx.doi.org/10.2174/1566523214666140424145305 |
Print ISSN 1566-5232 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5631 |
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