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Designing Dendrimer and Miktoarm Polymer Based Multi-Tasking Nanocarriers for Efficient Medical Therapy

机译:设计基于树枝状聚合物和Miktoarm聚合物的多任务纳米载体以进行有效的医学治疗

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摘要

To address current complex health problems, there has been an increasing demand for smart nanocarriers that could perform multiple complimentary biological tasks with high efficacy. This has provoked the design of tailor made nanocarriers, and the scientific community has made tremendous effort in meeting daunting challenges associated with synthetically articulating multiple functions into a single scaffold. Branched and hyper-branched macromolecular architectures have offered opportunities in enabling carriers with capabilities including location, delivery, imaging etc. Development of simple and versatile synthetic methodologies for these nanomaterials has been the key in diversifying macromolecule based medical therapy and treatment. This review highlights the advancement from conventional “only one function” to multifunctional nanomedicine. It is achieved by synthetic elaboration of multivalent platforms in miktoarm polymers and dendrimers by physical encapsulation, covalent linking and combinations thereof.
机译:为了解决当前的复杂健康问题,对可以执行多种互补的高效生物任务的智能纳米载体的需求不断增长。这激起了定制纳米载体的设计,科学界付出了巨大的努力来应对与将多种功能合成为单个支架相关的艰巨挑战。支化和超支化的大分子结构为载体提供了包括定位,递送,成像等功能的机会。为这些纳米材料开发简单而通用的合成方法一直是使基于大分子的医学治疗和治疗多样化的关键。这篇综述强调了从传统的“仅一种功能”到多功能纳米医学的进步。它是通过物理封装,共价连接及其组合,通过合成精制米克臂聚合物和树枝状聚合物中的多价平台而实现的。

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