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Control of Cationic Nanogel PEGylation in Heterogeneous ARGET ATRP Emulsion Polymerization with PEG Macromonomers

机译:PEG大分子异质ARGET ATRP乳液聚合中阳离子纳米凝胶PEG化的控制

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摘要

Crosslinked cationic nanoscale networks with hydrophobic cores are an environmentally robust alternative to self-assembled polymeric drug delivery carriers with respect to therapeutic encapsulation and stability to dilution. However, the ability to tune the degree of PEG incorporated into nanogels during synthesis is more challenging. In this work, biodegradable cationic nanogels were synthesized by ARGET ATRP emulsion polymerization in a single step. The density of PEG in the final nanogels ranged from zero to 40 wt % and was dependent on the feed concentration of PEG monomer, surfactant concentration, surfactant hydrophilic–lipophilic balance, and the ratio of cationic to nonionic surfactant. A comprehensive analysis of nanogel material properties as a function of PEG graft density is presented including analysis of composition, monomer conversion, thermal properties, size, surface charge, and degradation. This study provides a robust analysis for the synthesis of degradable cationic nanogels via a controlled radical polymerization with predictable degrees of PEGylation.
机译:就治疗封装和稀释稳定性而言,具有疏水性核心的交联阳离子纳米级网络是自组装聚合物药物递送载体的环保替代品。但是,在合成过程中调节掺入纳米凝胶中PEG程度的能力更具挑战性。在这项工作中,可通过一步ARGET ATRP乳液聚合合成可生物降解的阳离子纳米凝胶。最终纳米凝胶中PEG的密度范围为0至40 wt%,并取决于PEG单体的进料浓度,表面活性剂浓度,表面活性剂亲水-亲脂平衡以及阳离子与非离子表面活性剂的比例。提出了作为PEG接枝密度函数的纳米凝胶材料性能的综合分析,包括组成,单体转化率,热性能,尺寸,表面电荷和降解的分析。这项研究为通过可预测的PEG化程度的受控自由基聚合合成可降解的阳离子纳米凝胶提供了可靠的分析。

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