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Brush-First and ROMP-Out with Functional (Macro)monomers: Method Development Structural Investigations and Applications of an Expanded Brush-Arm Star Polymer Platform

机译:具有功能性(宏观)单体的先刷和ROMP淘汰方法:扩展的刷臂星形聚合物平台的方法开发结构研究和应用

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摘要

The efficient synthesis of complex functional polymeric nanomaterials is often challenging. Ru-initiated ring-opening metathesis polymerization (ROMP) of multivalent macromonomers followed by cross-linking to form brush-arm star (BASP) polymers enables access to well-defined nano-structures with diverse functionality. This “brush-first” method leaves active Ru in the BASP microgel core, which could potentially be used in a subsequent “ROMP-out” (RO) step to introduce further modifications to the BASP structure via the addition of (macro)monomers. Here, we study this RO approach in depth. The efficiency of RO is assessed for a variety of BASP compositions using a combination of inductively coupled plasma mass spectrometry and gel permeation chromatography. To demonstrate the modularity of the RO process, arylboronic acid-functionalized BASPs were prepared; uptake of these RO-BASPs into hypersialylated cancer cells was enhanced relative to non-functionalized BASPs as determined by flow cytometry and fluorescence microscopy. In addition, the self-assembly of miktoarm BASPs prepared via brush-first and RO with different macromonomers is demonstrated. The combination of brush-first ROMP with RO provides a simple, modular strategy for access to a wide array of functional nanomaterials.
机译:复杂功能高分子纳米材料的有效合成通常具有挑战性。多价大分子单体的Ru引发的开环复分解聚合(ROMP),然后进行交联以形成刷臂星形(BASP)聚合物,从而可以访问具有多种功能的定义明确的纳米结构。这种“刷头优先”方法将活性Ru留在BASP微凝胶核心中,可将其潜在地用于随后的“ ROMP输出”(RO)步骤,以通过添加(大)单体对BASP结构进行进一步修饰。在这里,我们深入研究这种RO方法。使用感应耦合等离子体质谱法和凝胶渗透色谱法的组合评估了各种BASP组合物的RO效率。为了证明反渗透过程的模块性,制备了芳基硼酸官能化的BASP。通过流式细胞术和荧光显微镜测定,相对于非功能化的BASP,这些RO-BASP对高唾液酸化的癌细胞的摄取增加。此外,还展示了通过先刷和反渗透制备的大臂BASP与不同的大分子单体的自组装。刷头式ROMP与RO的结合为访问多种功能纳米材料提供了一种简单的模块化策略。

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