同轴
聚己内酯
材料科学
脚手架
壳体(结构)
制作
组织工程
3D打印
芯(光纤)
复合材料
纳米技术
生物医学工程
机械工程
聚合物
工程类
医学
替代医学
病理
作者
Tianqi Liu,B. Yang,Wenqing Tian,Xianglin Zhang,Bin Wu
出处
期刊:Polymers
[MDPI AG]
日期:2022-04-22
卷期号:14 (9): 1722-1722
被引量:7
标识
DOI:10.3390/polym14091722
摘要
For decades, coaxial printing has been widely applied in 3D tissue engineering scaffold fabrication. However, there are few reports regarding polymeric materials application in shell production due to fabrication constraints. In this study, a combination of cryogenic printing and coaxial printing aims to approach the challenge. Polycaprolactone (PCL) and sodium alginate (SA) were selected as the representative shell and core materials to test the feasibility of the coaxial cryogenic printing by optimizing key parameters, including working temperature, air pressure, PCL, and SA concentration. According to the optical and SEM images, the SA core contracts a string inside the PCL shell, illustrating the shell/core structure of the 3D coaxial PCL/SA scaffolds. Besides, the shell/core 3D scaffold possesses a 38.39 MPa Young's modulus in mechanical tests; the PCL shell could retain at least 8 h in 5 mol/L HCl solution, leading to a fabricated drug-loaded PCL/SA shell/core "responsive" to acidic pH. In summary, coaxial cryogenic printing was developed to fabricate 3D scaffolds with a PCL/SA shell/core scaffold, broadening the material range of coaxial printing and providing promising applications in drug release.
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