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From Defined Reactive Diblock Copolymers to Functional HPMA-Based Self-Assembled Nanoaggregates

机译:从确定的反应性双嵌段共聚物到功能性基于HPMA的自组装纳米聚集体

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摘要

This paper describes the synthesis of functional amphiphilic poly(N-(2-hydroxypropyl) methacrylamide)-block-poly(lauryl methacrylate) copolymers by RAFT polymerization via the intermediate step of activated ester block copolymers (pentafluoro-phenyl methacrylate). Block copolymers with molecular weights from 12000—28000 g/mol and PDIs of about 1.2 have been obtained. The amphiphilic diblock copolymers form stable super structures (nanoaggregates) by self-organization in aqueous solution. The diameters of these particles are between 100 and 200 nm and depend directly on the molecular weight of the block copolymer. Furthermore, we investigated the impact of these nanoaggregates on cell viability and on the motility of adherent cells. Cytotoxicity was investigated by the MTS test and the fluctuation in cell shape was monitored employing ECIS (electrical cell-substrate impedance sensing). In these investigations, the formed particles are not cell toxic up to a concentration of 2 mg/mL. Thus, our polymeric particles offer potential as polymer therapeutics.
机译:本文介绍了通过活性酯嵌段共聚物(五氟苯基甲基丙烯酸苯酯)的中间步骤,通过RAFT聚合反应合成功能性两亲性聚(N-(2-羟丙基)甲基丙烯酰胺)嵌段-聚甲基丙烯酸月桂酯共聚物。已获得分子量为12000-28000 g / mol和PDI约为1.2的嵌段共聚物。两亲性二嵌段共聚物通过在水溶液中自组织而形成稳定的超结构(纳米聚集体)。这些颗粒的直径在100至200nm之间,并且直接取决于嵌段共聚物的分子量。此外,我们研究了这些纳米聚集体对细胞活力和粘附细胞运动的影响。通过MTS试验研究细胞毒性,并使用ECIS(细胞-基底电阻抗感应)监测细胞形状的波动。在这些研究中,所形成的颗粒浓度高达2 mg / mL时对细胞无毒。因此,我们的聚合物颗粒具有作为聚合物治疗剂的潜力。

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