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pH-Responsive, Functionalizable Spyrocyclic Polycarbonate: A Versatile Platform for Biocompatible Nanoparticles

机译:pH-响应,官能化络合物聚碳酸酯:生物相容性纳米颗粒的通用平台

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Polymeric nanoparticles are widely investigated to enhance the selectivity of therapeutics to targeted sites, as well as to increase circulation lifetime and water solubility of poorly soluble drugs. In contrast to the encapsulation of the cargo into the nanostructures, the conjugation directly to the polymer backbone allows better control on the loading and selective triggered release. In this work we report a simple procedure to create biodegradable polycarbonate graft copolymer nanoparticles via a ring opening polymerization and subsequent postpolymerization modification strategies. The polymer, designed with both pH-responsive acetal linkages and a norbornene group, allows for highly efficient postpolymerization modifications through a range of chemistries to conjugate imaging agents and solubilizing arms to direct self-assembly. To demonstrate the potential of this approach, polycarbonate-based nanoparticles were tested for biocompatibility and their ability to be internalized in A549 and IMR-90 cell lines.
机译:广泛研究聚合物纳米颗粒以增强治疗剂对靶向部位的选择性,以及增加循环寿命和可溶性药物的水溶性。与货物的包封相比,进入纳米结构的封装,直接缀合至聚合物主链允许更好地控制载荷和选择性触发释放。在这项工作中,我们报告了一种简单的方法,通过开环聚合和随后的后共聚改性策略来创建可生物降解的聚碳酸酯接枝共聚物纳米颗粒。设计具有pH响应缩醛键和降冰片烯组的聚合物,允许通过一系列化学物质进行高效的后聚合修饰,以将成像剂缀合并溶解臂以直接自组装。为了证明这种方法的潜力,测试基于聚碳酸酯的纳米颗粒用于生物相容性及其在A549和IMR-90细胞系中内化的能力。

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