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首页> 外文期刊>Journal of Bioactive and Compatible Polymers >Nanoconnposite thermogel for controlled release of small proteins
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Nanoconnposite thermogel for controlled release of small proteins

机译:纳米复合热凝胶可控制小蛋白质的释放

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摘要

A nanocomposite thermogel composed of Pluronic~R-based multiblock copolymer and laponite nanoclay was developed to sustain delivery of low-molecular-weight proteins. The rapid release of low-molecular-weight proteins from multiblock copolymer thermogels has been a problem for sustained delivery but was solved by using nanocomposite thermogel. Lysozyme (_w = 14,700), a relatively low-molecular-weight protein, was successfully loaded into and released from nanocomposite thermogel. In addition, interactions among multiblock copolymer, laponite, and lysozyme were studied in terms of gelation, micellization, particle size, and zeta potential. Critical micellization temperatures and sol-gel transition temperatures of multiblock copolymer solutions were lowered with laponite addition. Positively charged lysozyme was adsorbed onto anionic surface of laponite, which increased with an increase in the lysozyme concentration. Particle size and zeta potential of the laponite-lysozyme complex were also dependent on the lysozyme concentration. The nanocomposite thermogel sustained lysozyme release to 40 days, whereas lysozyme release from multiblock copolymer thermogel lasted for only 18 days. The structural stability of released lysozyme was confirmed by circular dichroism spectroscopy and differential scanning calorimetry.
机译:开发了由Pluronic〜R基多嵌段共聚物和合成锂皂石组成的纳米复合热凝胶,以维持低分子量蛋白质的传递。低分子量蛋白质从多嵌段共聚物热凝胶中快速释放一直是持续递送的问题,但是通过使用纳米复合热凝胶解决了该问题。溶菌酶(_w = 14,700)是一种相对低分子量的蛋白质,已成功加载到纳米复合热凝胶中并从纳米复合热凝胶中释放出来。此外,还研究了多嵌段共聚物,皂石和溶菌酶之间的相互作用,包括凝胶化,胶束化,粒径和Zeta电位。添加锂皂石降低了多嵌段共聚物溶液的临界胶束化温度和溶胶-凝胶转变温度。带正电荷的溶菌酶被吸附到锂皂石的阴离子表面上,并随着溶菌酶浓度的增加而增加。皂石-溶菌酶复合物的粒度和ζ电位也取决于溶菌酶的浓度。纳米复合热凝胶将溶菌酶持续释放至40天,而多嵌段共聚物热凝胶的溶菌酶释放仅持续18天。通过圆二色谱和差示扫描量热法确认了释放的溶菌酶的结构稳定性。

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