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使用莰烯作为孔隙调节剂制备分级宏观/微观多孔聚(ε-己内酯)/磷酸钙复合支架的3D绘图

3D Plotting using Camphene as Pore-regulating Agent to Produce Hierarchical Macro/micro-porous Poly(ε-caprolactone)/calcium phosphate Composite Scaffolds.

作者信息

Choi Jae-Won, Maeng Woo-Youl, Koh Young-Hag, Lee Hyun, Kim Hyoun-Ee

机构信息

School of Biomedical Engineering, Korea University, Seoul 02841, Korea.

Department of Materials Science and Engineering, Seoul National University, Seoul 08826, Korea.

出版信息

Materials (Basel). 2019 Aug 21;12(17):2650. doi: 10.3390/ma12172650.

Abstract

This study demonstrates the utility of camphene as the pore-regulating agent for phase separation-based 3D plotting to produce hierarchical macro/micro-porous poly(ε-caprolactone) (PCL)-calcium phosphate (CaP) composite scaffolds, specifically featuring highly microporous surfaces. Unlike conventional particulate porogens, camphene is highly soluble in acetone, the solvent for PCL polymer, but insoluble in coagulation medium (water). In this study, this unique characteristic supported the creation of numerous micropores both within and at the surfaces of PCL and PCL-CaP composite filaments when using high camphene contents (40 and 50 wt%). In addition, the incorporation of the CaP particles into PCL solutions did not deteriorate the formation of microporous structures, and thus hierarchical macro/micro-porous PCL-CaP composite scaffolds could be successfully produced. As the CaP content increased, the in vitro biocompatibility, apatite-forming ability, and mechanical properties (tensile strength, tensile modulus, and compressive modulus) of the PCL-CaP composite scaffolds were substantially improved.

摘要

本研究证明了莰烯作为基于相分离的3D打印中孔隙调节剂的效用,以制备具有分级宏观/微孔结构的聚(ε-己内酯)(PCL)-磷酸钙(CaP)复合支架,其特别具有高度微孔化的表面。与传统的颗粒致孔剂不同,莰烯在PCL聚合物的溶剂丙酮中高度可溶,但在凝固介质(水)中不溶。在本研究中,当使用高含量的莰烯(40和50 wt%)时,这种独特的特性有助于在PCL和PCL-CaP复合长丝内部和表面形成大量微孔。此外,将CaP颗粒加入PCL溶液中不会恶化微孔结构的形成,因此可以成功制备出具有分级宏观/微孔结构的PCL-CaP复合支架。随着CaP含量的增加,PCL-CaP复合支架的体外生物相容性、磷灰石形成能力和力学性能(拉伸强度、拉伸模量和压缩模量)得到显著改善。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d1e7/6747617/5a4093b4b24e/materials-12-02650-g001.jpg

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