Department of Paediatric Orthopaedics, The Children's Hospital, 605254Zhejiang University School of Medicine, National Clinical Research Center for Child Health, Hangzhou, China.
State Key Laboratory of Fluid Power and Mechatronic Systems, School of Mechanical Engineering, 529107Zhejiang University, Hangzhou, China.
J Biomater Appl. 2022 Sep;37(3):538-550. doi: 10.1177/08853282221101148. Epub 2022 May 12.
Multichannel nerve guidance conduits (NGCs) replicating the native architecture of peripheral nerves have emerged as promising alternatives to autologous nerve grafts. However, manufacturing multichannel NGCs is challenging in terms of desired structural stability and resolution. In this study, we systematically investigated the effects of photopolymer properties, inner diameter dimensions, printing parameters, and different conditions on multichannel NGCs printability using projection-based three-dimensional printing. Low viscosity and rapid photocuring properties were essential requirements. A standard model was generated to evaluate multichannel NGC printed quality. The results showed that printing deviations decreased with increased mechanical strength and inner diameter. Subsequently, gelatin methacrylate (GelMA) NGCs was selected as a representative. It was found that printing conditions, including printing temperature, peeling, and shrinkage affected final NGC accuracy and quality. PC-12 cells cultured with the GelMA NGCs displayed non-toxic and promoted cell migration. Our research provides an effective, time-saving, and high-resolution technology for manufacturing multichannel NGCs with high fidelity, which may be used as reference templates for biomedical applications.
多通道神经导管(NGC)复制了周围神经的固有结构,已成为自体神经移植物的有前途的替代品。然而,就所需的结构稳定性和分辨率而言,制造多通道 NGC 具有挑战性。在这项研究中,我们使用基于投影的三维打印系统,系统地研究了光聚合特性、内径尺寸、打印参数和不同条件对多通道 NGC 可打印性的影响。低粘度和快速光固化特性是基本要求。生成了一个标准模型来评估多通道 NGC 的打印质量。结果表明,随着机械强度和内径的增加,打印偏差减小。随后,选择明胶甲基丙烯酸盐(GelMA)NGC 作为代表。研究发现,打印条件,包括打印温度、剥离和收缩,会影响最终 NGC 的准确性和质量。在 GelMA NGC 中培养的 PC-12 细胞显示出无毒且促进细胞迁移的特性。我们的研究为制造具有高保真度的多通道 NGC 提供了一种有效、省时且高分辨率的技术,可为生物医学应用提供参考模板。