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使用电穿孔法将白细胞介素10基因导入小鼠角膜。

Gene transfer of interleukin 10 to the murine cornea using electroporation.

作者信息

Zhou Rui, Dean David A

机构信息

Division of Pulmonary and Critical Care Medicine, Feinberg School of Medicine, Northwestern University, Chicago, IL 60611, USA.

出版信息

Exp Biol Med (Maywood). 2007 Mar;232(3):362-9.

Abstract

Gene therapy is a promising approach to deliver anti-inflammatory genes to the eye to treat a number of corneal diseases. We have used electroporation to deliver plasmids expressing interleukin 10 (IL-10) to the corneas of mice and evaluated the duration of expression following gene transfer. Unlike expression of reporter genes driven from the cytomegalovirus immediate early promoter (CMV(iep)), which remained high for 3 days, CMV(iep)-driven IL-10 expression peaked at Day 1 and decreased 2-fold each day thereafter. In an attempt to increase the duration of expression, the long-acting ubiquitin C (UbC) promoter was used but, surprisingly, a similar half-life of gene expression was observed. This reduced duration was not due to promoter inhibition by expressed IL-10 or clearance of plasmids from the cornea. However, when DNA nuclear targeting sequences (DTSs) that promote DNA nuclear import were removed from the plasmids, contrary to findings in nondividing cells and tissues in which these sequences are needed for gene transfer, robust expression was observed, and the duration increased significantly. Although corneal cell turnover was detected, suggesting mitosis-dependent plasmid nuclear localization independent of a DTS, the patterns of expressing and dividing cells appeared different. These results suggest that DNA nuclear targeting sequences may act differently in the cornea than in other tissues.

摘要

基因治疗是一种很有前景的方法,可将抗炎基因导入眼部以治疗多种角膜疾病。我们利用电穿孔法将表达白细胞介素10(IL-10)的质粒导入小鼠角膜,并评估了基因转移后表达的持续时间。与由巨细胞病毒立即早期启动子(CMV(iep))驱动的报告基因的表达不同,后者在3天内一直保持高水平,CMV(iep)驱动的IL-10表达在第1天达到峰值,此后每天下降2倍。为了延长表达持续时间,使用了长效泛素C(UbC)启动子,但令人惊讶的是,观察到了相似的基因表达半衰期。这种表达持续时间的缩短并非由于表达的IL-10对启动子的抑制作用或质粒从角膜中的清除。然而,当从质粒中去除促进DNA核输入的DNA核靶向序列(DTSs)时,与非分裂细胞和组织中基因转移需要这些序列的研究结果相反,观察到了强劲的表达,且持续时间显著增加。尽管检测到角膜细胞更新,提示存在不依赖DTS的有丝分裂依赖性质粒核定位,但表达细胞和分裂细胞的模式似乎不同。这些结果表明,DNA核靶向序列在角膜中的作用可能与在其他组织中不同。

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