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Application of 3D Printing Technology for Design and Manufacturing of Customized Components for a Mechanical Stretching Bioreactor

机译:3D打印技术在机械拉伸生物反应器定制组件设计和制造中的应用

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Three-dimensional (3D) printing represents a key technology for rapid prototyping, allowing easy, rapid, and low-cost fabrication. In this work, 3D printing was applied for the in-house production of customized components of a mechanical stretching bioreactor with potential application for cardiac tissue engineering and mechanobiology studies. The culture chamber housing and the motor housing were developed as functional permanent parts, aimed at fixing the culture chamber position and at guaranteeing motor watertightness, respectively. Innovative sample holder prototypes were specifically designed and 3D-printed for holding thin and soft biological samples during cyclic stretch culture. The manufactured components were tested in-house and in a cell biology laboratory. Moreover, tensile tests and finite element analysis were performed to investigate the gripping performance of the sample holder prototypes. All the components showed suitable performances in terms of design, ease of use, and functionality. Based on 3D printing, the bioreactor optimization was completely performed in-house, from design to fabrication, enabling customization freedom, strict design-to-prototype timing, and cost and time effective testing, finally boosting the bioreactor development process.
机译:三维(3D)打印代表了快速原型制作的一项关键技术,可轻松,快速且低成本地制造。在这项工作中,将3D打印用于机械拉伸生物反应器的定制组件的内部生产,并可能在心脏组织工程和力学生物学研究中应用。培养室外壳和电机外壳被开发为功能性永久部件,分别用于固定培养室位置和保证电机水密性。专门设计了创新的样品架原型,并进行了3D打印,以在循环拉伸培养过程中容纳薄而柔软的生物样品。所制造的组件在内部和细胞生物学实验室中进行了测试。此外,进行了拉伸测试和有限元分析,以研究样品架原型的抓地性能。所有组件在设计,易用性和功能性方面均表现出合适的性能。基于3D打印,从设计到制造完全在内​​部进行了生物反应器的优化,从而实现了自定义自由,严格的设计到原型开发时间以及成本和时间有效的测试,从而最终促进了生物反应器的开发过程。

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