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一种用于3D打印多通道、器官再生支架的积木式方法。

A building-block approach to 3D printing a multichannel, organ-regenerative scaffold.

作者信息

Wang Xiaohong, Rijff Boaz Lloyd, Khang Gilson

机构信息

Centre of Organ Manufacturing, Department of Mechanical Engineering, Tsinghua University, Beijing, People's Republic of China.

State Key Laboratory of Materials Processing and Die and Mould Technology, Huazhong University of Science and Technology, Wuhan, People's Republic of China.

出版信息

J Tissue Eng Regen Med. 2017 May;11(5):1403-1411. doi: 10.1002/term.2038. Epub 2015 Jun 29.

Abstract

Multichannel scaffolds, formed by rapid prototyping technologies, retain a high potential for regenerative medicine and the manufacture of complex organs. This study aims to optimize several parameters for producing poly(lactic-co-glycolic acid) (PLGA) scaffolds by a low-temperature, deposition manufacturing, three-dimensional printing (3DP, or rapid prototyping) system. Concentration of the synthetic polymer solution, nozzle speed and extrusion rate were analysed and discussed. Polymer solution with a concentration of 12% w/v was determined as optimal for formation; large deviation of this figure failed to maintain the desired structure. The extrusion rate was also modified for better construct quality. Finally, several solid organ scaffolds, such as the liver, with proper wall thickness and intact contour were printed. This study gives basic instruction to design and fabricate scaffolds with de novo material systems, particularly by showing the approximation of variables for manufacturing multichannel PLGA scaffolds. Copyright © 2015 John Wiley & Sons, Ltd.

摘要

通过快速成型技术制造的多通道支架在再生医学和复杂器官制造方面仍具有巨大潜力。本研究旨在通过低温沉积制造三维打印(3DP,即快速成型)系统,优化生产聚乳酸-乙醇酸共聚物(PLGA)支架的多个参数。对合成聚合物溶液的浓度、喷嘴速度和挤出速率进行了分析和讨论。确定浓度为12% w/v的聚合物溶液最适合成型;该数值的较大偏差无法维持所需结构。还对挤出速率进行了调整以提高构建质量。最后,打印出了几个具有适当壁厚和完整轮廓的实体器官支架,如肝脏。本研究为使用新型材料系统设计和制造支架提供了基本指导,特别是通过展示制造多通道PLGA支架时各变量的近似值。版权所有© 2015约翰威立父子有限公司。

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