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首页> 外文期刊>Biomacromolecules >Photopolymerized Thermosensitive Poly(HPMAIactate)-PEG-Based Hydrogels: Effect of Network Design on Mechanical Properties, Degradation, and Release Behavior
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Photopolymerized Thermosensitive Poly(HPMAIactate)-PEG-Based Hydrogels: Effect of Network Design on Mechanical Properties, Degradation, and Release Behavior

机译:光聚合热敏聚(HPMAIactate)-PEG基水凝胶:网络设计对机械性能,降解和释放行为的影响

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摘要

Photopolymerized thermosensitive A-B-A triblock copolymer hydrogels composed of poly(N-(2-hydroxypropyl)-methacrylarnide lactate) A-blocks, partly derivatized with methacrylate groups to different extents (10,20, and 30%) and hydrophilic poly(ethylene glycol) B-blocks of different molecular weights (4, 10, and 20 kDa) were synthesized. The aim of the present study was to correlate the polymer architecture with the hydrogel properties, particularly Theological, swelling, degradation properties and release behavior. It was found that an increasing methacrylation extent and a decreasing PEG molecular weight resulted in increasing gel strength and cross-link density, which tailored the degradation profiles from 25 to more than 300 days. Polymers having small PEG blocks showed a remarkable phase separation into polymer- and water-rich domains, as demonstrated by confocal microscopy. Depending on the hydrophobic domain density, the loaded protein resides in the hydrophilic pores or is partitioned into hydrophilic and hydrophobic domains, and its release from these compartments is tailored by the extent of methacrylation and by PEG length, respectively. As the mechanical properties, degradation, and release profiles can be fully controlled by polymer design and concentration, these hydrogels are suitable for controlled protein release.
机译:由聚(N-(2-羟丙基)-甲基丙烯酰胺乳酸)A嵌段组成的光聚合热敏ABA三嵌段共聚物水凝胶,部分被甲基丙烯酸酯基团不同程度地衍生化(10,20和30%)和亲水性聚乙二醇B合成了不同分子量(4、10和20 kDa)的β-嵌段。本研究的目的是将聚合物结构与水凝胶性质,特别是流变学,溶胀,降解性质和释放行为相关联。发现增加的甲基丙烯酸化程度和降低的PEG分子量导致增加的凝胶强度和交联密度,这将降解曲线从25天调整为超过300天。共聚焦显微镜表明,具有小的PEG嵌段的聚合物表现出明显的相分离,形成了富含聚合物和富含水的区域。取决于疏水域的密度,负载的蛋白质驻留在亲水孔中或被划分为亲水和疏水域,并且其从这些区室的释放分别通过甲基丙烯酸化程度和PEG长度来定制。由于可以通过聚合物设计和浓度完全控制机械性能,降解和释放特性,因此这些水凝胶适用于控制蛋白质的释放。

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