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Towards the Fabrication of Polyelectrolyte-Based Nanocapsules for Bio-Medical Applications

机译:面向生物医学应用的基于聚电解质的纳米胶囊的制备

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The delivery and controlled release of drugs in the human body is one of the main research fields of nanotechnology applied to medicine. An ideal drug carrier should be able to deliver drug molecules to the site of action and to interact specifically with target cells. In this perspective, different organic and inorganic nanosystems have been proposed and tested. One of the most interesting techniques for the synthesis of drug carriers is represented by the layer-by-layer self-assembly (LbL) of nanoengineered shells onto sacrificial templates. However, this technique has been mostly applied for the fabrication of hollow microcapsules, while targeting single cells would require the fabrication of nanocapsules. LbL-based nanocapsules have been proposed in the literature using inorganic nanoparticles or polymeric ones as sacrificial templates, requiring the use of organic solvents for their removal. In the view of a perspective application of such nanocapsules, the use of biocompatible and biodegradable reagents plays a pivotal role. In this respect, recently, the possibility of synthesizing in a highly controlled way calcium carbonate nanoparticles has opened new perspectives for such kind of carrier systems.
机译:药物在人体中的传递和控制释放是应用于医学的纳米技术的主要研究领域之一。理想的药物载体应能够将药物分子递送至作用部位并与靶细胞特异性相互作用。从这个角度来看,已经提出并测试了不同的有机和无机纳米系统。合成药物载体最有趣的技术之一是在牺牲模板上的纳米工程壳的逐层自组装(LbL)。然而,该技术已主要用于中空微囊的制造,而靶向单细胞将需要纳米囊的制造。在文献中已经提出了基于LbL的纳米胶囊,其使用无机纳米颗粒或聚合物纳米颗粒作为牺牲模板,需要使用有机溶剂来去除它们。考虑到此类纳米胶囊的透视应用,生物相容性和可生物降解试剂的使用起着关键作用。在这方面,近来,以高度受控的方式合成碳酸钙纳米颗粒的可能性为这种载体系统开辟了新的前景。

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