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Hyaluronic acid hydrogel scaffolds loaded with cationic niosomes for efficient non-viral gene delivery

机译:装有阳离子脂质体的透明质酸水凝胶支架,可有效地传递非病毒基因

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The lack of ideal non-viral gene carriers has motivated the combination of delivery systems and tissue-engineered scaffolds, which may offer relevant advantages such as enhanced stability and reduced toxicity. In this work, we evaluated a new combination between niosome non-viral vectors and hyaluronic acid (HA) hydrogel scaffolds, both widely studied due to their biocompatibility as well as their ability to incorporate a wide variety of molecules. We evaluated three different niosome formulations (niosomes 1 , 2 and 3 ) varying in composition of cationic lipid, helper lipid and non-ionic tensioactives. Niosomes and nioplexes obtained upon the addition of plasmid DNA were characterized in terms of size, polydispersity, zeta potential and ability to transfect mouse bone marrow cloned mesenchymal stem cells (mMSCs) in 2D culture. Niosome 1 was selected for encapsulation in HA hydrogels due to its higher transfection efficiency and the formulation was concentrated in order to be able to incorporate higher amounts of DNA within HA hydrogels. Nioplex-loaded HA hydrogels were characterized in terms of biomechanical properties, particle distribution, nioplex release kinetics and ability to transfect encapsulated mMSCs in 3D culture. Our results showed that nioplex-loaded HA hydrogel scaffolds presented little or no particle aggregation, allowed for extensive cell spreading and were able to efficiently transfect encapsulated mMSCs with high cellular viability. We believe that the knowledge gained through this in vitro model can be utilized to design novel and effective platforms for in vivo local and non-viral gene delivery applications.
机译:理想的非病毒基因载体的缺乏推动了递送系统和组织工程支架的结合,这可能提供相关的优势,例如增强的稳定性和降低的毒性。在这项工作中,我们评估了含脂质的非病毒载体和透明质酸(HA)水凝胶支架之间的新组合,两者都因其生物相容性以及其结合多种分子的能力而受到广泛研究。我们评估了三种不同的脂质体制剂(脂质体1、2和3),它们的阳离子脂质,辅助脂质和非离子型张力活性剂的组成各不相同。根据大小,多分散性,zeta电位以及在2D培养中转染小鼠骨髓克隆的间充质干细胞(mMSCs)的能力来表征添加质粒DNA后获得的脂质体和脂质体。选择Niosome 1封装在HA水凝胶中是因为它具有更高的转染效率,并且将制剂浓缩以能够在HA水凝胶中掺入更多的DNA。负载了Nioplex的HA水凝胶的生物力学特性,颗粒分布,Nioplex释放动力学和转染3D培养物中封装的mMSC的能力均得到了表征。我们的研究结果表明,负载nioplex的HA水凝胶支架几乎没有或没有颗粒聚集,可以使细胞广泛扩散,并能够高效转染具有高细胞活力的封装的mMSC。我们相信通过这种体外模型获得的知识可以用于设计新颖的有效平台,用于体内局部和非病毒基因递送应用。

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