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Protocells: Modular Mesoporous Silica Nanoparticle-Supported Lipid Bilayers for Drug Delivery

机译:原始细胞:模块化介孔二氧化硅纳米粒子支持脂质双层的药物输送。

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摘要

Mesoporous silica nanoparticle-supported lipid bilayers, termed protocells,' represent a potentially transformative class of therapeutic and theranostic delivery vehicle. The field of targeted drug delivery poses considerable challenges that cannot be addressed with a single magic bullet'. Consequently, the protocell has been designed as a modular platform composed of interchangeable biocompatible components. The mesoporous silica core has variable size and shape to direct biodistribution and a controlled pore size and surface chemistry to accommodate diverse cargo. The encapsulating supported lipid bilayer can be modified with targeting and trafficking ligands as well as polyethylene glycol (PEG) to effect selective binding, endosomal escape of cargo, drug efflux prevention, and potent therapeutic delivery, while maintaining in vivo colloidal stability. This review describes the individual components of the platform, including the mesoporous silica nanoparticle core and supported lipid bilayer, their assembly (by multiple techniques) into a protocell, and the combined, often synergistic, performance of the protocell based on in vitro and in vivo studies, including the assessment of biocompatibility and toxicity. In closing, the many emerging variations of the protocell theme and the future directions for protocell research are commented on.
机译:介孔二氧化硅纳米颗粒支持的脂质双层,称为原生细胞,代表了治疗和治疗学递送载体的潜在转化类。有针对性的药物输送领域提出了巨大的挑战,这是无法用单一的魔术弹解决的。因此,原始细胞已被设计为由可互换的生物相容性成分组成的模块化平台。中孔二氧化硅核具有可变的大小和形状以指导生物分布,并具有受控的孔径和表面化学性质以适应各种货物。可以用靶向和运输配体以及聚乙二醇(PEG)修饰包封的支持的脂质双层,以实现选择性结合,货物的内体逸出,药物外排防止和有效的治疗递送,同时保持体内胶体稳定性。这篇综述描述了平台的各个组成部分,包括中孔二氧化硅纳米颗粒核心和支持的脂质双层,它们通过多种技术组装(通过多种技术)到原生细胞中,以及基于体外和体内的原始细胞综合的,通常是协同的性能研究,包括对生物相容性和毒性的评估。最后,评论了protocell主题的许多新兴变化以及protocell研究的未来方向。

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