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Branched and Dendritic Polymer Architectures: Functional Nanomaterials for Therapeutic Delivery

机译:分支和树枝状聚合物体系结构:用于治疗性输送的功能纳米材料。

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Barriers to therapeutic transport in biological systems can prevent accumulation of drugs at the intended site, thus limiting the therapeutic effect against various diseases. Advances in synthetic chemistry techniques have recently increased the accessibility of complex polymer architectures for drug delivery systems, including branched polymer architectures. This article first outlines drug delivery concepts, and then defines and illustrates all forms of branched polymers including highly branched polymers, hyperbranched polymers, dendrimers, and branched-linear hybrid polymers. Many new types of branched and dendritic polymers continue to be reported; however, there is often confusion about how to accurately describe these complex polymer architectures, particularly in the interdisciplinary field of nanomedicine where not all researchers have in-depth polymer chemistry backgrounds. In this context, the present review describes and compares different branched polymer architectures and their application in therapeutic delivery in a simple and easy-to-understand way, with the aim of appealing to a multidisciplinary audience.
机译:生物系统中治疗性运输的障碍可以防止药物在预期部位积聚,从而限制了对各种疾病的治疗效果。合成化学技术的进步最近增加了复杂聚合物体系结构对药物递送系统的可及性,包括支链聚合物体系结构。本文首先概述了药物输送的概念,然后定义和说明了所有形式的支链聚合物,包括高度支链的聚合物,超支化聚合物,树枝状聚合物和支链-线性杂化聚合物。继续有许多新型的支化和树枝状聚合物报道。然而,如何准确地描述这些复杂的聚合物结构常常令人困惑,特别是在纳米医学的跨学科领域中,并不是所有的研究人员都具有深入的聚合物化学背景。在这种情况下,本综述以一种简单易懂的方式描述和比较了不同的支链聚合物结构及其在治疗中的应用,目的是吸引多学科的读者。

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