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Additive manufactured customizable labware for biotechnological purposes

机译:用于生物技术用途的增材制造的可定制实验室器具

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摘要

Yet already developed in the 1980s, the rise of 3D printing technology did not start until the beginning of this millennium as important patents expired, which opened the technology to a whole new group of potential users. One of the first who used this manufacturing tool in biotechnology was Lücking et al. in 2012, demonstrating potential uses , . This study shows applications of custom‐built 3D‐printed parts for biotechnological experiments. It gives an overview about the objects' computer‐aided design (CAD) followed by its manufacturing process and basic studies on the used printing material in terms of biocompatibility and manageability. Using the stereolithographic (SLA) 3D‐printing technology, a customizable shake flask lid was developed, which was successfully used to perform a bacterial fed‐batch shake flask cultivation. The lid provides Luer connectors and tube adapters, allowing both sampling and feeding without interrupting the process. In addition, the digital blueprint the lid is based on, is designed for a modular use and can be modified to fit specific needs. All connectors can be changed and substituted in this CAD software‐based file. Hence, the lid can be used for other applications, as well. The used printing material was tested for biocompatibility and showed no toxic effects neither on mammalian, nor on bacteria cells. Furthermore an SDS‐PAGE‐comb was drawn and printed and its usability evaluated to demonstrate the usefulness of 3D printing for everyday labware. The used manufacturing technique for the comb (multi jet printing, MJP) generates highly smooth surfaces, allowing this application.
机译:然而,在1980年代已经发展起来的3D打印技术的兴起直到本世纪初才开始,因为重要的专利到期,这使该技术向整个潜在用户群开放。 Lücking等人是最早在生物技术中使用这种制造工具的人之一。在2012年,展示了其潜在用途。这项研究显示了定制的3D打印零件在生物技术实验中的应用。它概述了对象的计算机辅助设计(CAD),然后根据其生物相容性和可管理性对其制造过程和所用印刷材料进行了基础研究。使用立体光刻(SLA)3D打印技术,开发了可定制的摇瓶盖,该盖成功地用于进行细菌补料分批摇瓶培养。盖子上有Luer连接器和试管适配器,可在不中断过程的情况下进行采样和进料。此外,盖子所基于的数字设计图是为模块化使用而设计的,可以进行修改以适应特定的需求。可以在此基于CAD软件的文件中更改和替换所有连接器。因此,盖子也可以用于其他应用。测试了所用的印刷材料的生物相容性,对哺乳动物和细菌细胞均未显示毒性作用。此外,绘制并打印了SDS-PAGE-梳子,并评估了其可用性,以证明3D打印对于日常实验室用具的有用性。梳子使用的制造技术(多次喷射印刷,MJP)可产生高度光滑的表面,从而可实现此应用。

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