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首页> 外文期刊>Ultrasound in Medicine and Biology >Enhancement Effect of Ultrasound-Induced Microbubble Cavitation on Branched Polyethylenimine-Mediated VEGF165 Transfection With Varied N/P Ratio
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Enhancement Effect of Ultrasound-Induced Microbubble Cavitation on Branched Polyethylenimine-Mediated VEGF165 Transfection With Varied N/P Ratio

机译:超声微泡空化对N / P比变化的支化聚乙烯亚胺介导的VEGF165转染的增强作用

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摘要

One isoform of the vascular endothelial growth factor, VEGF165, has been reported to be a dominant mediator and regulator of angiogenic process, which plays an important role in treating cardiovascular diseases and chronically ischemic wounds. Branched polyethylenimine (bPEI) has been widely used as a non-viral delivery vector for gene therapy. Although bPEI-mediated DNA transfection efficiency can be raised by increasing the PEI nitrogen:DNA phosphate (N/P) ratio, cytotoxicity increases as well. In this study, the enhancement effect of microbubble inertial cavitation (IC) on bPEI-mediated VEGF165 transfection was investigated, in an effort to optimize transfection efficiency using low N/P ratios. HEK 293T cells, mixed with bPEI:VEGF165 complexes, were exposed to 1-MHz ultrasound pulses. The results show that: (1) IC activity induced by microbubble destruction can be quantified as an IC " dose" (ICD) and will increase with increasing acoustic driving pressure; (2) larger sonoporation pores can be generated by increasing ICD; (3) the transfection efficiency can be enhanced by increasing ICD until reaching a saturation level; and (4) microbubble IC activity has less cytotoxicity than bPEI, although a combinatorial effect of microbubble IC activity and bPEI could be observed on cell viability. The results suggest that, with appropriate ultrasound parameters, it is possible to optimize bPEI-mediated VEGF transfection efficiency using relatively low N/P ratios by employing ultrasound-induced microbubble inertial cavitation. ? 2013 World Federation for Ultrasound in Medicine & Biology.
机译:据报道,血管内皮生长因子的一种同工型VEGF165是血管生成过程的主要介体和调节剂,在治疗心血管疾病和慢性缺血性伤口中起着重要作用。支链聚乙烯亚胺(bPEI)已被广泛用作基因治疗的非病毒载体。尽管可以通过增加PEI氮:DNA磷酸盐(N / P)的比例来提高bPEI介导的DNA转染效率,但细胞毒性也会增加。在这项研究中,研究了微泡惯性空化(IC)对bPEI介导的VEGF165转染的增强作用,以利用低N / P比优化转染效率。将混合了bPEI:VEGF165复合物的HEK 293T细胞暴露于1-MHz超声脉冲。结果表明:(1)由微泡破坏引起的IC活性可以量化为IC“剂量”(ICD),并随着声驱动压力的增加而增加; (2)通过增加ICD可以产生更大的声纳孔; (3)通过增加ICD直至达到饱和水平可以提高转染效率。 (4)微泡IC活性比bPEI的细胞毒性小,尽管可以观察到微泡IC活性和bPEI对细胞生存力的组合作用。结果表明,利用适当的超声参数,可以通过采用超声诱导的微泡惯性空化,以相对较低的N / P比来优化bPEI介导的VEGF转染效率。 ? 2013年世界医学与生物学超声联合会。

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