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首页> 外文期刊>Pharmaceutical research >Hypoxia-inducible vascular endothelial growth factor gene therapy using the oxygen-dependent degradation domain in myocardial ischemia.
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Hypoxia-inducible vascular endothelial growth factor gene therapy using the oxygen-dependent degradation domain in myocardial ischemia.

机译:在心肌缺血中使用氧依赖性降解域进行缺氧诱导的血管内皮生长因子基因治疗。

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PURPOSE: A hypoxia-inducible VEGF expression system with the oxygen-dependent degradation (ODD) domain was constructed and tested to be used in gene therapy for ischemic myocardial disease. METHODS: Luciferase and VEGF expression vector systems were constructed with or without the ODD domain: pEpo-SV-Luc (or pEpo-SV-VEGF) and pEpo-SV-Luc-ODD (or pEpo-SV-VEGF-ODD). In vitro gene expression efficiency of each vector type was evaluated in HEK 293 cells under both hypoxic and normoxic conditions. The amount of VEGF protein was estimated by ELISA. The VEGF expression vectors with or without the ODD domain were injected into ischemic rat myocardium. Fibrosis, neovascularization, and cardiomyocyte apoptosis were assessed using Masson's trichrome staining, alpha-smooth muscle actin (alpha-SMA) immunostaining, and the TUNEL assay, respectively. RESULTS: The plasmid vectors containing ODD significantly improved the expression level of VEGF protein in hypoxic conditions. The enhancement of VEGF protein production was attributed to increased protein stability due to oxygen deficiency. In a rat model of myocardial ischemia, the pEpo-SV-VEGF-ODD group exhibited less myocardial fibrosis, higher microvessel density, and less cardiomyocyte apoptosis compared to the control groups (saline and pEpo-SV-VEGF treatments). CONCLUSION: An ODD-mediated VEGF expression system that facilitates VEGF-production under hypoxia may be useful in the treatment of ischemic heart disease.
机译:目的:构建具有氧依赖性降解(ODD)结构域的低氧诱导性VEGF表达系统,并测试该系统可用于缺血性心肌病的基因治疗。方法:构建有或没有ODD域的荧光素酶和VEGF表达载体系统:pEpo-SV-Luc(或pEpo-SV-VEGF)和pEpo-SV-Luc-ODD(或pEpo-SV-VEGF-ODD)。在缺氧和常氧条件下,在HEK 293细胞中评估每种载体类型的体外基因表达效率。通过ELISA估计VEGF蛋白的量。将具有或不具有ODD结构域的VEGF表达载体注射到局部缺血的大鼠心肌中。分别使用Masson的三色染色,α平滑肌肌动蛋白(alpha-SMA)免疫染色和TUNEL分析评估纤维化,新血管形成和心肌细胞凋亡。结果:在缺氧条件下,含有ODD的质粒载体能显着提高VEGF蛋白的表达水平。 VEGF蛋白产生的增加归因于由于缺氧而增加的蛋白稳定性。在大鼠心肌缺血模型中,pEpo-SV-VEGF-ODD组与对照组相比(盐水和pEpo-SV-VEGF处理)表现出更少的心肌纤维化,更高的微血管密度和更少的心肌细胞凋亡。结论:在缺氧条件下,ODD介导的VEGF表达系统可促进VEGF的产生,在缺血性心脏病的治疗中可能有用。

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