...
首页> 外文期刊>The journal of gene medicine >Controlled nonviral gene delivery and expression using stable neural stem cell line transfected with a hypoxia-inducible gene expression system
【24h】

Controlled nonviral gene delivery and expression using stable neural stem cell line transfected with a hypoxia-inducible gene expression system

机译:使用稳定的缺氧诱导基因表达系统转染的神经干细胞系控制非病毒基因的传递和表达

获取原文
获取原文并翻译 | 示例

摘要

Nonviral ex vivo local gene therapy systems consisting of regulated gene expression vectors and cellular delivery platforms represent a novel strategy for tissue repair and regeneration. We introduced a hypoxia-regulated plasmid-based system into mouse neural stem cells (NSCs) as an efficient gene expression and delivery platform for rapid, robust and persistent hypoxic/ischemic-regulated gene expression in the spinal cord.Methods: A synthetic hypoxia-responsive erythropoietin (Epo) enhancer, the SV40 minimal promoter and the luciferase (Luc) reporter gene were incorporated in a DsRed-expressing double-promoter plasmid for cell lipofection and Zeocin-selection to establish a hypoxia-regulated stable NSC line (NSC-Epo-SV-Luc). A nonhypoxia-regulated stable NSC line (NSC-SV-Luc) was also established as a control.Results: Under the transcriptional regulation of the Epo enhancer, in vitro luciferase expression in NSC-Epo-SV-Luc, but not in NSC-SV-Luc, was sensitively augmented according to the strength and duration of the hypoxic stimulus and was quickly down-regulated to a low basal level after reoxygenation of the hypoxic cells. Furthermore, deoxygenation of the reoxygenated cells clearly enhanced the luciferase activity again. After transplantation into a rat spinal cord injury (SCI) model, only NSC-Epo-SV-Luc showed ischemic injury-specific luciferase expression Notably, the engineered NSC lines kept the neural differentiation potential and retained the hypoxia-regulated luciferase expression after differentiation.Conclusions: We propose that NSCs engineered with the Epo-SV-therapeutic gene will be valuable for developing a controllable stem cell-mediated nonviral gene therapy for SCI or other central nervous system diseases accompanied with chronic or episodic hypoxic/ischemic stresses.
机译:由调节的基因表达载体和细胞递送平台组成的非病毒离体局部基因治疗系统代表了组织修复和再生的新策略。我们将基于缺氧调节的基于质粒的系统引入小鼠神经干细胞(NSC)中,作为有效的基因表达和递送平台,以快速,稳健和持续地对缺氧/缺血调节的脊髓中的基因进行表达。响应性促红细胞生成素(Epo)增强子,SV40最小启动子和荧光素酶(Luc)报告基因被整合到表达DsRed的双启动子质粒中,用于细胞脂质转染和Zeocin选择,从而建立了一个低氧调节的稳定NSC系(NSC-Epo -SV-Luc)。还建立了一个非缺氧调节的稳定NSC系(NSC-SV-Luc)作为对照。结果:在Epo增强子的转录调控下,体外荧光素酶在NSC-Epo-SV-Luc中表达,但在NSC-中不表达。 SV-Luc根据缺氧刺激的强度和持续时间而灵敏地增强,并且在低氧细胞再充氧后迅速下调至低基础水平。此外,再氧化细胞的脱氧显然再次增强了荧光素酶活性。移植到大鼠脊髓损伤(SCI)模型后,只有NSC-Epo-SV-Luc表现出缺血损伤特异性荧光素酶表达。值得注意的是,经过工程改造的NSC系保留了神经分化潜能并在分化后保留了低氧调节的荧光素酶表达。结论:我们认为,用Epo-SV治疗基因工程化的NSC对开发可控的干细胞介导的非病毒基因治疗SCI或其他伴有慢性或发作性缺氧/缺血性应激的中枢神经系统疾病具有重要价值。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号