Institute for Bioengineering of Catalonia (IBEC), Biomaterials for Regenerative Therapies, Baldiri Reixac 15-21, 08028 Barcelona, Spain; CIBER de Bioingeniería, Biomateriales y Nanomedicina (CIBER-BBN), Barcelona, Spain.
Institute for Bioengineering of Catalonia (IBEC), Biomaterials for Regenerative Therapies, Baldiri Reixac 15-21, 08028 Barcelona, Spain.
Mater Sci Eng C Mater Biol Appl. 2014 May 1;38:55-62. doi: 10.1016/j.msec.2014.01.003. Epub 2014 Jan 28.
Achieving high quality 3D-printed structures requires establishing the right printing conditions. Finding processing conditions that satisfy both the fabrication process and the final required scaffold properties is crucial. This work stresses the importance of studying the outcome of the plasticizing effect of PEG on PLA-based blends used for the fabrication of 3D-direct-printed scaffolds for tissue engineering applications. For this, PLA/PEG blends with 5, 10 and 20% (w/w) of PEG and PLA/PEG/bioactive CaP glass composites were processed in the form of 3D rapid prototyping scaffolds. Surface analysis and differential scanning calorimetry revealed a rearrangement of polymer chains and a topography, wettability and elastic modulus increase of the studied surfaces as PEG was incorporated. Moreover, addition of 10 and 20% PEG led to non-uniform 3D structures with lower mechanical properties. In vitro degradation studies showed that the inclusion of PEG significantly accelerated the degradation rate of the material. Results indicated that the presence of PEG not only improves PLA processing but also leads to relevant surface, geometrical and structural changes including modulation of the degradation rate of PLA-based 3D printed scaffolds.
要获得高质量的 3D 打印结构,需要建立正确的打印条件。找到既满足制造工艺又满足最终所需支架性能的加工条件至关重要。这项工作强调了研究 PEG 对用于组织工程应用的 3D 直接打印支架制造的 PLA 基共混物的增塑效果的重要性。为此,以 PLA/PEG 共混物(PEG 含量为 5、10 和 20%(w/w))和 PLA/PEG/生物活性 CaP 玻璃复合材料的形式进行 3D 快速原型支架加工。表面分析和差示扫描量热法表明,随着 PEG 的加入,聚合物链发生重排,研究表面的形貌、润湿性和弹性模量增加。此外,添加 10%和 20%的 PEG 会导致具有较低机械性能的非均匀 3D 结构。体外降解研究表明,PEG 的加入显著加速了材料的降解速率。结果表明,PEG 的存在不仅改善了 PLA 的加工性能,而且还导致了相关的表面、几何和结构变化,包括调节 PLA 基 3D 打印支架的降解速率。