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首页> 外文期刊>ACS applied materials & interfaces >Fabrication of Protease-Sensitive and Light-Responsive Microcapsules Encompassed with Single Layer of Gold Nanoparticles by Using Self-Assembly Protein of alpha-Synuclein
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Fabrication of Protease-Sensitive and Light-Responsive Microcapsules Encompassed with Single Layer of Gold Nanoparticles by Using Self-Assembly Protein of alpha-Synuclein

机译:通过使用α-突触核蛋白的自组装蛋白,制备蛋白酶敏感和光响应微胶囊包围的单层金纳米粒子

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A bioapplicable cargo delivery system requires the following characteristics of biocompatibility, in vivo stability, and selective cargo release at target sites. We introduce herein the microcapsules enclosed with a single layered shell of gold nanoparticles (AuNPs) mutually connected by an amyloidogenic protein of alpha-synuclein (alpha S). The microcapsules were fabricated by producing oil (chloroform)-in-water Pickering emulsions of the aSencapsulated AuNPs and subsequent molecular engagement of the outlying aS molecules, leading to formidable beta-sheet formation in the presence of chloroform. The wrinkled skin of microcapsules obtained after evaporation of the internal chloroform also reflects robustness of the protein-protein interaction, which was experimentally confirmed by their rheological stability. For the emulsions loaded with rhodamine 6G, their dye release was demonstrated to be controlled by proteases. Along with their photothermal activity, the AuNP-containing microcapsules and their proteolyzed fragments were therefore suggested to be capable of eliminating aberrant cells in the protease-activated pathologically affected areas. Orthogonal cargo loading was also achieved by encapsulating both hydrophobic and hydrophilic substances either directly dissolved in chloroform or prepackaged in inverted micelles, respectively. Microcapsule's functionality was further expanded by localizing quantum dots, magnetic nanoparticles, and antibodies inside or on the surface of the microcapsules. Taken together, these multimodal AuNP microcapsules are suggested to be an ideal cargo carrier system, which could be employed in not only biomedical theranostic applications as they exhibit structural robustness, specific targeting, triggered release, and photothermal activity but also sensor development in general.
机译:生物敷料的货物输送系统需要在靶位点的体内稳定性和选择性货物释放的以下生物相容性的以下特征。在此介绍,用α-突触核蛋白(αS)的淀粉样蛋白相互连接的金纳米粒子(AUNP)的单层壳包围的微胶囊。通过生产紫色的αUnps的油(氯仿)-in-in-in-in-in水泡沫乳液和随后的氯仿作为分子的分子接合来制造微胶囊,导致氯仿存在下形成的β-片形成。在内部氯仿蒸发后获得的微胶囊的皱纹皮肤也反映了蛋白质 - 蛋白质相互作用的鲁棒性,其通过流变稳定性实验证实。对于用罗丹明6G负载的乳液,证明它们的染料释放由蛋白酶控制。随着它们的光热活性以及含AUNP的微胶囊及其蛋白水解的片段,提出能够消除蛋白酶活化的病理受损区域中的异常细胞。通过将疏水性和亲水性的物质包封直接溶解在氯仿中或以倒胶束预先包装,也可以实现正交载荷。通过定位量子点,磁性纳米颗粒和微胶囊表面内或抗体进一步扩展微胶囊的功能。占据了这些多模式AUNP微胶囊,建议是理想的货物载体系统,其不仅可以在生物医学治疗应用中使用,因为它们表现出结构鲁棒性,具体的靶向,触发释放和光热活动,而且通常是传感器发展。

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