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使用腺病毒载体和角膜细胞特异性启动子进行角膜基质细胞的体内基因递送和可视化。

In vivo gene delivery and visualization of corneal stromal cells using an adenoviral vector and keratocyte-specific promoter.

作者信息

Carlson Eric C, Liu Chia-Yang, Yang Xiaoping, Gregory Meredith, Ksander Bruce, Drazba Judith, Perez Victor L

机构信息

Ophthalmic Research, Cole Eye Institute, The Cleveland Clinic Foundation, Ohio 44195, USA.

出版信息

Invest Ophthalmol Vis Sci. 2004 Jul;45(7):2194-200. doi: 10.1167/iovs.03-1224.

Abstract

PURPOSE

This study was conducted to determine whether intrastromal injection of adenoviral construct could be used to transfect corneal stroma cells effectively in vivo and to determine whether a tissue-specific promoter could be used to express exogenous genes in keratocytes.

METHODS

An adenoviral construct with a cytomegalovirus (pCMV)-driven enhanced green fluorescent protein (EGFP) reporter gene was injected into the stroma of murine corneas. In vivo expression was quantitated and samples were analyzed by in vivo stereomicroscopy, and ex vivo expression was determined by confocal three dimensional (3-D) reconstruction. The 3.2-kb keratocan promoter was used to drive tissue-specific reporter gene expression in vivo.

RESULTS

EGFP expression was first detected in vivo 11 hours after injection of adeno-EGFP in the corneal stroma, with a duration of approximately 3 weeks. Ex vivo wholemount cornea confocal analysis with 3-D reconstruction allowed visualization of EGFP expression in corneal stroma cells, to accurately assess cellular architecture and distribution in the corneal stroma. Naked pCMV-EGFP plasmid DNA did not express the reporter gene to the levels of the adeno-EGFP. The 3.2-kb keratocan promoter was capable of driving EGFP tissue-specific expression in the cornea.

CONCLUSIONS

Intrastromal injection of adenovirus packaged DNA constructs is a rapid and efficient way to deliver and express genes in the corneal stroma. Intrastromal injection is also capable of delivering tissue-specific promoter constructs to the corneal stroma for gene expression. Furthermore, 3-D reconstruction provides a powerful tool for enhanced visualization of the corneal stroma environment and cellular biology.

摘要

目的

本研究旨在确定基质内注射腺病毒构建体是否可用于在体内有效转染角膜基质细胞,并确定组织特异性启动子是否可用于在角膜细胞中表达外源基因。

方法

将携带巨细胞病毒(pCMV)驱动的增强型绿色荧光蛋白(EGFP)报告基因的腺病毒构建体注射到小鼠角膜基质中。通过体内立体显微镜对体内表达进行定量分析,并对样本进行分析,通过共聚焦三维(3-D)重建确定体外表达。使用3.2kb的角蛋白聚糖启动子在体内驱动组织特异性报告基因的表达。

结果

在角膜基质中注射腺病毒-EGFP后11小时首次在体内检测到EGFP表达,持续时间约为3周。通过3-D重建的体外全层角膜共聚焦分析可观察到角膜基质细胞中的EGFP表达,从而准确评估角膜基质中的细胞结构和分布。裸pCMV-EGFP质粒DNA的报告基因表达水平不及腺病毒-EGFP。3.2kb的角蛋白聚糖启动子能够驱动EGFP在角膜中的组织特异性表达。

结论

基质内注射包装有DNA构建体的腺病毒是在角膜基质中递送和表达基因的快速有效方法。基质内注射还能够将组织特异性启动子构建体递送至角膜基质以进行基因表达。此外,3-D重建为增强角膜基质环境和细胞生物学的可视化提供了强大工具。

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