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Control of aggregation temperatures in mixed and blended cytocompatible thermoresponsive block co-polymer nanoparticles

机译:控制混合和共混的细胞相容性热响应嵌段共聚物纳米粒子中的聚集温度

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摘要

A small library of thermoresponsive amphiphilic copolymers based on polylactide-block-poly((2-(2-methoxyethoxy)ethyl methacrylate)-co-(oligoethylene glycol methacrylate)) (PLA-b-P(DEGMA)-co-(OEGMA)), was synthesised by copper-mediated controlled radical polymerisation (CRP) with increasing ratios of OEGMA:DEGMA. These polymers were combined in two ways to form nanoparticles with controllable thermal transition temperatures as measured by particle aggregation. The first technique involved the blending of two (PLA-b-P(DEGMA)-co-(OEGMA)) polymers together prior to assembling nanoparticles (NPs). The second method involved mixing pre-formed nanoparticles of single (PLA-b-P(DEGMA)-co-(OEGMA)) polymers. The observed critical aggregation temperature Tt did not change in a linear relationship with the ratios of each copolymer either in the nanoparticles blended from different copolymers or in the mixtures of pre-formed nanoparticles. However, where co-polymer mixtures were based on (OEG)9MA ratios within 5-10 mole%, a linear relationship between (OEG)9MA composition in the blends and Tt was obtained. The data suggest that OEGMA-based copolymers are tunable over a wide temperature range given suitable co-monomer content in the linear polymers or nanoparticles. Moreover, the thermal transitions of the nanoparticles were reversible and repeatable, with the cloud point curves being essentially invariant across at least three heating and cooling cycles, and a selected nanoparticle formulation was found to be readily endocytosed in representative cancer cells and fibroblasts.
机译:一个基于聚丙交酯嵌段-聚((甲基丙烯酸2-(2-(2-甲氧基乙氧基)乙酯)-co-(甲基丙烯酸低聚乙二醇酯))(PLA-bP(DEGMA)-co-(OEGMA))的热敏性两亲共聚物的小型图书馆,通过铜介导的受控自由基聚合(CRP)以OEGMA:DEGMA的比例增加的方式合成了C.这些聚合物以两种方式结合以形成具有可控的热转变温度的纳米颗粒,如通过粒子聚集所测量的。第一项技术涉及在组装纳米粒子(NP)之前将两种(PLA-b-P(DEGMA)-co-(OEGMA))聚合物共混在一起。第二种方法涉及混合单个(PLA-b-P(DEGMA)-co-(OEGMA))聚合物的预制纳米颗粒。观察到的临界聚集温度Tt与从不同共聚物共混的纳米颗粒或预形成的纳米颗粒的混合物中的每种共聚物的比例均没有线性关系。然而,当共聚物混合物基于(OEG)9MA的比例在5-10摩尔%之内时,在共混物中的(OEG)9MA组成与Tt之间获得线性关系。数据表明,给定线性聚合物或纳米颗粒中合适的共聚单体含量,基于OEGMA的共聚物可在很宽的温度范围内调节。此外,纳米粒子的热转变是可逆的和可重复的,浊点曲线在至少三个加热和冷却循环中基本上不变,并且发现所选的纳米粒子制剂易于在代表性的癌细胞和成纤维细胞中内吞。

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