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首页> 外文期刊>Biomacromolecules >Controlled Thermoresponsive Hydrogels by Stereocomplexed PLA-PEG-PLA Prepared via Hybrid Micelles of Pre-Mixed Copolymers with Different PEG Lengths
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Controlled Thermoresponsive Hydrogels by Stereocomplexed PLA-PEG-PLA Prepared via Hybrid Micelles of Pre-Mixed Copolymers with Different PEG Lengths

机译:通过具有不同PEG长度的预混合共聚物的混合胶束制备的立体复合PLA-PEG-PLA控制的热响应水凝胶

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摘要

The stereocomplexed hydrogels derived from the micelle mixture of two enantiomeric triblock copolymers, PLLA-PEG-PLLA and PDLA-PEG-PDLA, reported in 2001 exhibited sol-to-gel transition at approximately body temperature upon heating. However, the showed poor storage modulus (ca. 1000 Pa) determined their insufficiency as injectable implant biomaterials for many applications. In this study, the mechanical property of these hydrogels was significantly improved by the modifications of molecular weights and micelle structure, Co-micelles composed of blockcopolymers with two sizes of PEG block length were shown to possess unique and dissimilar properties from the micelles composed of single-sized block copolymers. The stereomixture of PLA-PEG-PLA comicelles showed a controllable sol-to-gel transition at a wide temperature range of 4 and 80 °C. The sol-gel phase diagram displays a linear relationship of temperature versus copolymer composition; hence, a transition at body temperature can be readily achieved by adjusting the mixed copolymer ratio. The resulting thermoresponsive hydrogels exhibit a storage modulus notably higher (ca. 6000 Pa) than that of previously reported hydrogels. As a physical network solely governed by self-reorganization of micelles, followed by stereocomplexation, this unique system offers practical, safe, and simple implantable biomaterials.
机译:2001年报道,衍生自两种对映体三嵌段共聚物PLLA-PEG-PLLA和PDLA-PEG-PDLA的胶束混合物的立体复合水凝胶在加热后的大约人体温度下表现出溶胶-凝胶转变。然而,显示出较差的储能模量(约1000 Pa)决定了它们在许多应用中不能作为可注射植入物生物材料。在这项研究中,通过改变分子量和胶束结构,这些水凝胶的机械性能得到了显着改善。由具有两种PEG嵌段长度的嵌段共聚物组成的胶束与单胶束的胶束相比具有独特的特性尺寸的嵌段共聚物。 PLA-PEG-PLA胶束的立体混合物在4和80°C的宽温度范围内显示出可控的溶胶-凝胶转变。溶胶-凝胶相图显示温度与共聚物组成的线性关系;因此,通过调节混合共聚物的比例,可以容易地实现体温下的转变。所得的热响应水凝胶显示出比先前报道的水凝胶显着更高的储能模量(约6000 Pa)。作为仅由胶束自我重组,然后进行立体复合作用控制的物理网络,这种独特的系统提供了实用,安全和简单的可植入生物材料。

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