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3D Printing of Cell Culture Devices: Assessment and Prevention of the Cytotoxicity of Photopolymers for Stereolithography

机译:3D细胞培养装置的印染:评估和预防立体镀层的光聚合物的细胞毒性

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摘要

3D printing is increasingly important for the rapid prototyping of advanced and tailor-made cell culture devices. In this context, stereolithography represents a method for the rapid generation of prototypes from photocurable polymers. However, the biocompatibility of commercially available photopolymers is largely unknown. Therefore, we evaluated the cytotoxicity of six polymers, two of them certified as biocompatible according to ISO 10993-5:2009, and we evaluated, if coating with Parylene, an inert polymer widely used in medical applications, might shield cells from the cytotoxic effects of a toxic polymer. In addition, we evaluated the processability, reliability, and consistency of the details printed. Human mesenchymal stem cells (MSCs) were used for cytotoxicity testing as they are widely used and promising for numerous applications in regenerative medicine. MSCs were incubated together with printed photopolymers, and the cytotoxicity was assessed. All photopolymers significantly reduced the viability of MSCs while the officially biocompatible resins displayed minor toxic effects. Further, coating with Parylene completely protected MSCs from toxic effects. In conclusion, none of the tested polymers can be fully recommended for rapid prototyping of cell culture devices. However, coating with Parylene can shield cells from toxic effects and thus might represent a viable option until more compatible materials are available.
机译:3D打印对于先进和量身定制的细胞培养装置的快速原型越来越重要。在这种情况下,立体光刻代表了一种用于快速产生来自光固化聚合物的原型的方法。然而,市售光聚合物的生物相容性在很大程度上是未知的。因此,我们评估了六种聚合物的细胞毒性,其中两种通过ISO 10993-5:2009认证为生物相容性,并且我们评估了,如果用聚对二甲苯的涂层,一种广泛用于医疗应用的惰性聚合物,可能会保护细胞毒性影响毒性聚合物。此外,我们还评估了所印刷的细节的可加工性,可靠性和一致性。人间充质干细胞(MSCs)用于细胞毒性试验,因为它们被广泛使用和对再生医学中的许多应用有望。将MSC与印刷光聚合物一起孵育,并评估细胞毒性。所有光聚合物均显着降低了MSCs的可行性,而官方生物相容性树脂显示出轻微的毒性效果。此外,涂覆与二甲苯完全保护的MSCs免受毒性作用。总之,没有测试的聚合物可以完全推荐用于细胞培养装置的快速原型设计。然而,用聚对聚丙烯的涂层可以保护细胞免受毒性作用,因此可以代表一种可行的选择,直到可使用更具相容的材料。

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