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首页> 外文期刊>Microchemical Journal: Devoted to the Application of Microtechniques in all Branches of Science >Smart multifunctional nanoparticles design as sensors and drug delivery systems based on supramolecular chemistry
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Smart multifunctional nanoparticles design as sensors and drug delivery systems based on supramolecular chemistry

机译:智能多功能纳米粒子设计为基于超分子化学的传感器和药物递送系统

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摘要

Supramolecular chemistry is a well-known field that, applied to analytical chemistry gives, as a result, supramolecular analytical chemistry. Based in its interactions, this field is part of a new area of nanomedicine, called supramolecular medicine. In order to improve the detection of biological molecules to be applied in cell tracking, health problems and biological events, supramolecular chemistry has lately been combined with supra-nano structures design. In other words, supramolecular systems can be used as tools in the nano-design of nano-systems for the bio-recognition of biological events, host of ions and organic molecules with different structures and intrinsic chemical properties, as enhancer of the solubility, modification of surface properties, bioconjugation for the nanoparticles design, etc. The versatility of these types of systems is very wide; specifically their use in the nanosensor design using nanoparticles was not highly applied. However, in the last years, the bioconjugation of supramolecular systems, such as macrocycles and antibodies, and proteins with metallic and polymeric nanopartides has increased, as well as the development of supramolecular nanoparticles based on host guest interactions of macrocycles. Therefore, this review focuses on the application of supramolecular systems as signal transducers in the nanosensors design for bio-recognition events, detection of biological targets, and drug delivery system. These nanosystems, as transducer hosts and building blocks, are linked to metallic and polymeric nanoparticles; and organize molecular systems for different applications. (C) 2016 Elsevier B.V. All rights reserved.
机译:超分子化学是一种众所周知的领域,其应用于分析化学,因此超分子分析化学赋予。基于其相互作用,该领域是纳米胺的新区域的一部分,称为超分子医学。为了改善待应用于细胞跟踪的生物分子的检测,健康问题和生物事件,超分子化学最近与Supra-Nano结构设计结合。换句话说,超分子系统可以用作纳米系统的纳米系统中的工具,用于生物识别生物事件,离子和有机分子具有不同结构和本征化学性质的生物识别,作为溶解度的增强剂,改性表面性质,纳米粒子设计的生物缀合等。这些类型的系统的多功能性非常宽;具体地,使用纳米颗粒的纳米传感器设计在纳米传感器设计中不太施加。然而,在过去几年中,超分子系统的生物缀合物,例如宏杂种和抗体,以及具有金属和聚合物纳米粒子的蛋白质的增加,以及基于宏杂种的宿主相互作用的超分子纳米颗粒的发育。因此,本综述重点介绍了超分子系统作为纳米传感器设计中的信号传感器,用于生物识别事件,检测生物靶标和药物递送系统。这些纳米系统作为换能器宿主和构建块,与金属和聚合物纳米颗粒连接;并组织用于不同应用的分子系统。 (c)2016年Elsevier B.v.保留所有权利。

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