首页> 外文期刊>Journal of Polymer Science, Part A. Polymer Chemistry >Core-Shell Particles with Glycopolymer Shell and Polynucleoside Core via RAFT: From Micelles to Rods
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Core-Shell Particles with Glycopolymer Shell and Polynucleoside Core via RAFT: From Micelles to Rods

机译:含糖聚合物壳和通过RAFT的多核苷核的核-壳颗粒:从胶束到棒

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Amphiphilic block copolymers were synthesized via the reversible addition fragmentation chain transfer (RAFT) copolymerisation of 2-methacrylamido glucopyranose (MAG) and 5'-O-methacryloyl uridine (MAU). Homopolymerisations of both monomers using (4-cyanopentanoic acid)-4-dithiobenzoate (CPADB) proceeded with pseudo first order kinetics in a living fashion, displaying linear evolution of molecular weight with conversion and low PDIs. A bimodal molecular weight distribution was observed for PMAU at low conversions courtesy of hybrid behavior between living and conventional free radical polymerization. This effect was more pronounced when a PMAG macroRAFT agent was chain extended with MAU, however, in both cases, good control was attained once the main RAFT equilibrium was established. A stability study on PMAU found that its hydrolysis is diffusion controlled, and is accelerated at physiological pH compared with neutral conditions. Self-assembly of four block copolymers with increasing hydrophobic (PMAU) block lengths produced micelles, which demonstrated an increased tendency to form rods as the PMAU block length increased. Interestingly, none of the block copolymers were surface-active. An initial assessment of PMAU's ability to bind the nucleoside adenosine through base pairing was highly promising, with DSC measurements indicating that adenosine is fully miscible in the PMAU matrix.
机译:通过2-甲基丙烯酰胺基吡喃葡萄糖(MAG)和5'-O-甲基丙烯酰尿苷(MAU)的可逆加成断裂链转移(RAFT)共聚合成两亲嵌段共聚物。使用(4-氰基戊酸)-4-二硫代苯甲酸酯(CPADB)进行的两种单体均聚反应以逼真的一级动力学进行,显示出分子量随转化率和低PDI线性变化。由于活性和常规自由基聚合反应之间的混合行为,在低转化率下观察到了PMAU的双峰分子量分布。当PMAG macroRAFT试剂与MAU进行链扩展时,这种效果更加明显,但是,在两种情况下,一旦建立了主要的RAFT平衡,就可以实现良好的控制。对PMAU的稳定性研究发现,与中性条件相比,其水解受扩散控制,并在生理pH值下加速。具有增加的疏水性(PMAU)嵌段长度的四种嵌段共聚物的自组装产生了胶束,这表明随着PMAU嵌段长度的增加,形成棒的趋势增加。有趣的是,没有一种嵌段共聚物具有表面活性。通过碱基配对对PMAU结合核苷腺苷的能力进行初步评估是非常有前途的,DSC测量表明,腺苷在PMAU基质中可完全混溶。

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