Gene therapy has demonstrated the protective potential of a variety of genes against stroke. However, conventional gene therapy vectors are limited due to the inability to temporally control their expression, which can sometimes lead to deleterious side effects. Thus, an inducible vector that can be temporally controlled and activated by the insult itself would be advantageous. Using hypoxia responsive elements (HRE) and antioxidant responsive elements (ARE), we have constructed an insult-inducible vector activated by hypoxia and reactive oxygen species (ROS). In COS7 cells, the inducible ARE-HRE-luciferase vectors are highly activated by oxygen deprivation, hydrogen peroxide treatment, and the ROS-induced transcription factor NF-E2-related factor 2 (Nrf2). Using a defective herpes virus, the neuroprotective potential of this inducible vector was tested by over-expressing the transcription factor Nrf2. In primary cortical cultures, expression of the inducible ARE-HRE-Nrf2 protects against oxygen glucose deprivation, similar to that afforded by the constitutively expressed Nrf2. This ARE+HRE vector system is advantageous in that it allows the expression of a transgene to be activated not only during hypoxia but also maintained after reperfusion, thus prolonging the transgene expression during an ischemic insult. This insult-inducible vector system will be a valuable gene therapy tool for activating therapeutic/protective genes in cerebrovascular diseases.
An insult-inducible vector system activated by hypoxia and oxidative stress for neuronal gene therapy.
一种由缺氧和氧化应激激活的损伤诱导型载体系统,用于神经元基因治疗
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作者:Cheng Michelle Y, Lee I-Ping, Jin Michael, Sun Guohua, Zhao Heng, Steinberg Gary K, Sapolsky Robert M
| 期刊: | Translational Stroke Research | 影响因子: | 4.300 |
| 时间: | 2011 | 起止号: | 2011 Mar 1; 2(1):92-100 |
| doi: | 10.1007/s12975-010-0060-2 | 研究方向: | 神经科学 |
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