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首页> 外文期刊>Composite interfaces >Surface entrapment of chitosan on 3D printed polylactic acid scaffold and its biomimetic growth of hydroxyapatite
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Surface entrapment of chitosan on 3D printed polylactic acid scaffold and its biomimetic growth of hydroxyapatite

机译:壳聚糖表面夹带3D印刷聚乳酸支架及其羟基磷灰石的仿生生长

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摘要

This work reports the surface modification of 3D printed PLA scaffold with chitosan and its hydroxyapatite (HA) forming capability. PLA scaffold was fabricated using a desktop 3D printer followed by the inclusion of chitosan on the surface via surface entrapment. Confocal laser scanning microscopy (CLSM) images showed existence of chitosan entrapment with depth of 24 mu m. Immersion of the modified PLA scaffold in simulated body fluid resulted in formation of apatite layers on the surface. Plus the entrapment method does not induce any cytotoxic response towards human fibroblast cell. This method provides a facile approach of obtaining 3D printed scaffold with good bioactivity thus has potential in biomimetic and tissue engineering.
机译:该工作报告了用壳聚糖及其羟基磷灰石(HA)形成能力的3D印刷PLA支架的表面改性。 使用台式3D打印机制造PLA脚手架,然后通过表面截留将壳聚糖包叠在表面上。 共聚焦激光扫描显微镜(CLSM)图像显示存在壳聚糖夹带,深度为24亩。 浸入模拟体液中的改性PLA支架导致表面上形成磷灰石层。 再加熵方法不会诱导对人成纤维细胞的任何细胞毒性反应。 该方法提供了一种以良好的生物活性获得3D印刷支架的容易方法,因此具有仿生和组织工程。

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