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首页> 外文期刊>Journal of Applied Polymer Science >Mild method for the agglomeration of dispersed polycaprolactone microspheres via a genipin-crosslinked gelatin hydrogel
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Mild method for the agglomeration of dispersed polycaprolactone microspheres via a genipin-crosslinked gelatin hydrogel

机译:通过Genipin交联的明胶水凝胶进行分散聚己内酯微球团聚的温和方法

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摘要

Microsphere systems have been used to deliver drugs, proteins, and cells. However, dispersed microspheres can induce harmful effects after they are introduced into the body. To agglomerate these dispersed microspheres, an in situ forming system was developed to fabricate microsphere/hydrogel composites. Polycaprolactone microspheres with a porous surface and hollow core were physically incorporated into a genipin-crosslinked gelatin hydrogel. The incorporation of microspheres reduced the swelling capacities and weakened the unexpected volume expansion, which is not favorable for in vivo implants. Additionally, the reacted genipin ratio increased with increasing gelatin concentration. The degradation of the composite was also determined, and it was proposed that the degradation mechanism of the composite was bulk collapse, whereas that for the pure hydrogel was surface erosion. The obtained microsphere/hydrogel composite might have a great potential application as an injectable system for tissue regeneration.
机译:微球系统已用于输送药物,蛋白质和细胞。但是,分散的微球体进入人体后会产生有害影响。为了使这些分散的微球团聚,开发了原位形成系统以制造微球/水凝胶复合材料。将具有多孔表面和空心核的聚己内酯微球物理掺入Genipin交联的明胶水凝胶中。微球的加入降低了溶胀能力并减弱了意外的体积膨胀,这对于体内植入物是不利的。另外,反应的京尼平比率随着明胶浓度的增加而增加。还确定了复合材料的降解,并提出复合材料的降解机理是整体塌陷,而纯水凝胶的降解机理是表面侵蚀。所得的微球/水凝胶复合物作为组织再生用注射系统可能具有巨大的潜在应用。

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