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Enhancement of the transfection efficiency of DNA into Crocus sativus L. cells via PEI nanoparticles
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作者 Behnam Firoozi Nasser Zare +1 位作者 Omid Sofalian Parisa Sheikhzade-Mosadegh 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2018年第8期1768-1778,共11页
Over the past decade, several natural and synthetic cationic polymers have been utilized for gene delivery into cells. Among them, polyethylenimine(PEI) was used for gene therapy successfully. The present study invest... Over the past decade, several natural and synthetic cationic polymers have been utilized for gene delivery into cells. Among them, polyethylenimine(PEI) was used for gene therapy successfully. The present study investigated the effect of PEI and ultrasound waves on ssD NA delivery into saffron cells. Gel retardation, dynamic light scattering(DLS) and scanning electron microscopy(SEM) assays were employed to determine the physicochemical properties of PEI/f-DNA polyplex(complex of PEI and fluorescently labeled DNA). Moreover, the cytotoxicity of PEI, PEI/f-DNA polyplex and ultrasound were investigated on saffron cells at different concentrations. The gel retardation results indicated that the formation and neutralization of the PEI/f-DNA polyplex were completed at N/P=5. The particle size distribution of the polyplexes was from 50 to 122 nm. The experimental results revealed that the cytotoxicity of the PEI/f-DNA polyplex was lower than that of PEI alone, hence the cells showed both dose-and exposure duration-dependent responses. Furthermore, the viability of saffron cells declined extremely after 5 and 10 min sonication but this reduction was not significant at 2 min exposure duration. The results also indicated that the combined utilization of ultrasound and PEI nanoparticles increased the transfection efficiency of saffron cells up to two times higher than those obtained by PEI or ultrasound separately. 展开更多
关键词 pei/f-dna polyplex plant cell transfection SAFFRON sonication
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基因治疗中的非病毒载体 被引量:1
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作者 闵莉静 汤谷平 《国际遗传学杂志》 CAS 2007年第5期369-373,共5页
添加、修复或替换基因从而达到直接排除病因是基因治疗的目的,也是用于治疗遗传性和获得性疾病的治疗方法。它包括目的基因、载体和靶细胞三个方面,其中载体在整个传染过程中起着关键的作用。非病毒载体是该研究领域的热点之一,虽然... 添加、修复或替换基因从而达到直接排除病因是基因治疗的目的,也是用于治疗遗传性和获得性疾病的治疗方法。它包括目的基因、载体和靶细胞三个方面,其中载体在整个传染过程中起着关键的作用。非病毒载体是该研究领域的热点之一,虽然传染效率不如病毒载体,但其无毒、无免疫反应、性质可调且制备方便。该文主要就非病毒载体的转染机制及优化策略作一综述。 展开更多
关键词 非病毒载体 脂质体 聚阳离子 pei 基因转染
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巯基化透明质酸包封的仿生交联基因微载体的构建 被引量:2
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作者 徐志学 李文宇 +3 位作者 杨露 唐三 胡巧玲 王幽香 《高等学校化学学报》 SCIE EI CAS CSCD 北大核心 2012年第2期404-408,共5页
采用超分子组装技术,通过巯基化透明质酸(HA-SH)与聚乙烯亚胺(PEI)/DNA缔合体的界面静电组装,构建了壳层二硫键仿生交联的基因超分子组装体(PEI/DNA/HA-SH).凝胶电泳结果表明,该组装体有很好的DNA缔合特性.壳层的仿生交联使基因超分子... 采用超分子组装技术,通过巯基化透明质酸(HA-SH)与聚乙烯亚胺(PEI)/DNA缔合体的界面静电组装,构建了壳层二硫键仿生交联的基因超分子组装体(PEI/DNA/HA-SH).凝胶电泳结果表明,该组装体有很好的DNA缔合特性.壳层的仿生交联使基因超分子组装体在生理盐溶液中的稳定性得到有效改善,细胞毒性显著降低,并能有效转染细胞,为非病毒基因传递体系的设计提供了新途径. 展开更多
关键词 非病毒基因载体 仿生交联基因微载体 超分子组装 聚乙烯亚胺 透明质酸
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