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>A Poly-(ethylene glycol)-diacrylate 3D-Printed Micro-Bioreactor for Direct Cell Biological Implant-Testing on the Developing Chicken Chorioallantois Membrane
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A Poly-(ethylene glycol)-diacrylate 3D-Printed Micro-Bioreactor for Direct Cell Biological Implant-Testing on the Developing Chicken Chorioallantois Membrane
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机译:聚(乙二醇)-二丙烯酸酯 3D 打印微型生物反应器用于在发育中的鸡绒毛膜尿囊膜上进行直接细胞生物植入物测试
Advancements in biomaterial manufacturing technologies calls for improved standards of fabrication and testing. Currently 3D-printable resins are being formulated which exhibit the potential to rapidly prototype biocompatible devices. For validation purposes, 3D-printed materials were subjected to a hierarchical validation onto the chorioallantoic membrane of the developing chicken, better known as the HET CAM assay. Working along these lines, prints made from poly-(ethylene glycol)-diacrylate (PEGDA), which had undergone appropriate post-print processing, outperformed other commercial resins. This material passed all tests without displaying adverse effects, as experienced with other resin types. Based on this finding, the micro bioreactors (MBR) design, first made of PDMS and that also passed with cell tests on the HET-CAM, was finally printed in PEGDA, and applied in vivo. Following this workflow shows the applicability of 3D-printable resins for biomedical device manufacturing, consents to adherence to the present standards of the 3R criteria in material research and development, and provides flexibility and fast iteration of design and test cycles for MBR adaptation and optimization.
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机译:生物材料制造技术的进步要求提高制造和测试标准。目前,人们正在配制 3D 打印树脂,这些树脂具有快速构建生物相容性设备原型的潜力。出于验证目的,3D 打印材料在发育中的鸡的绒毛膜尿囊膜上进行了分层验证,更广为人知的是 HET CAM 测定。按照这些思路,由聚乙二醇二丙烯酸酯 (PEGDA) 制成的印刷品经过适当的印后处理,其性能优于其他商业树脂。这种材料通过了所有测试,没有显示出与其他树脂类型一样的不利影响。基于这一发现,微生物反应器 (MBR) 设计最初由 PDMS 制成,并通过了 HET-CAM 上的细胞测试,最后在 PEGDA 中打印,并应用于体内。遵循此工作流程表明 3D 打印树脂在生物医学设备制造中的适用性,同意在材料研发中遵守 3R 标准的现行标准,并为 MBR 的适应和优化提供灵活性和设计和测试周期的快速迭代。
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