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首页> 外文期刊>Drug Design, Development and Therapy >Gene transfer to rat cerebral cortex mediated by polysorbate 80 and poloxamer 188 nonionic surfactant vesicles
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Gene transfer to rat cerebral cortex mediated by polysorbate 80 and poloxamer 188 nonionic surfactant vesicles

机译:聚山梨酯80和泊洛沙姆188非离子表面活性剂囊泡介导的基因转移到大鼠大脑皮层

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Background: Gene therapy can be an intriguing therapeutic option in wide-ranging neurological disorders. Though nonviral gene carriers represent a safer delivery system to their viral counterparts, a thorough design of such vehicles is crucial to enhance their transfection properties. Purpose: This study evaluated the effects of combined use of two nonionic surfactants, poloxamer 188 (P) and polysorbate 80 (P80) into nanovesicles – based on 2,3-di(tetradecyloxy)propan-1-amine cationic lipid (D) – destined for gene delivery to central nervous system cells. Methods: Niosome formulations without and with poloxamer 188 (DP80 and DPP80, respectively) were prepared by the reverse-phase evaporation technique and characterized in terms of size, surface charge, and morphology. After the addition of pCMS-EGFP plasmid, the binding efficiency to the niosomes was evaluated in agarose gel electrophoresis assays. Additionally, transfection efficiency of complexes was also evaluated in in vitro and in vivo conditions. Results: In vitro experiments on NT2 cells revealed that the complexes based on a surfactant combination (DPP80) enhanced cellular uptake and viability when compared with the DP80 counterparts. Interestingly, DPP80 complexes showed protein expression in glial cells after administration into the cerebral cortices of rats. Conclusion: These data provide new insights for glia-centered approach for gene therapy of nervous system disorders using cationic nanovesicles, where nonionic surfactants play a pivotal role.
机译:背景:基因治疗在广泛的神经系统疾病中可能是一个有趣的治疗选择。尽管非病毒基因载体代表了向其病毒同伴更安全的传递系统,但对此类载体进行彻底的设计对于提高其转染特性至关重要。目的:本研究评估了将两种非离子表面活性剂泊洛沙姆188(P)和聚山梨酯80(P80)组合使用到纳米囊泡中的效果–基于2,3-二(十四烷氧基)丙-1-胺阳离子脂质(D)–旨在将基因传递给中枢神经系统细胞。方法:采用反相蒸发技术制备不含泊洛沙姆188和含泊洛沙姆188(分别为DP80和DPP80)的脂质体制剂,并对其大小,表面电荷和形态进行表征。添加pCMS-EGFP质粒后,在琼脂糖凝胶电泳分析中评估与脂质体的结合效率。另外,还在体外和体内条件下评估了复合物的转染效率。结果:在NT2细胞上的体外实验表明,与DP80对应物相比,基于表面活性剂组合(DPP80)的复合物可增强细胞摄取和生存能力。有趣的是,DPP80复合物在施用于大鼠大脑皮层后在神经胶质细胞中显示出蛋白质表达。结论:这些数据为以神经胶质为中心的使用阳离子纳米囊泡的神经系统疾病基因治疗方法提供了新见解,其中非离子表面活性剂起着关键作用。

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