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Compatibility analysis of 3D printer resin for biological applications

机译:用于生物应用的3D打印机树脂的兼容性分析

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摘要

The salient features of microfluidics such as reduced cost, handling small sample and reagent volumes and less time required to fabricate the devices has inspired the present work. The incompatibility of three-dimensional printer resins in their native form and the method to improve their compatibility to many biological processes via surface modification are reported. The compatibility of the material to build microfluidic devices was evaluated in three different ways: (i) determining if the ultraviolet (UV) cured resin inhibits the polymerase chain reaction (PCR), i.e. testing devices for PCR compatibility; (ii) observing agglutination complex formed on the surface of the UV cured resin when anti-C-reactive protein (CRP) antibodies and CRP proteins were allowed to agglutinate; and (iii) by culturing human embryonic kidney cell line cells and testing for its attachment and viability. It is shown that only a few among four in its native form could be used for fabrication of microchannels and that had the least effect on biological molecules that could be used for PCR and protein interactions and cells, whereas the others were used after treating the surface. Importance in building lab-on-chip/micrototal analysis systems and organ-on-chip devices is found.
机译:微流体的显着特征(例如降低成本,处理少量样品和试剂体积以及制造设备所需的时间更少)启发了当前的工作。报道了其天然形式的三维打印机树脂的不相容性以及通过表面改性改善其与许多生物过程的相容性的方法。用三种不同的方法评估了构建微流体装置的材料的相容性:(i)确定紫外线(UV)固化树脂是否抑制聚合酶链反应(PCR),即测试PCR相容性的装置; (ii)观察当抗C反应蛋白(CRP)抗体和CRP蛋白凝集时在UV固化树脂表面上形成的凝集复合物; (iii)通过培养人胚胎肾细胞系细胞并测试其附着和生存能力。结果表明,只有四分之一的天然形式可用于制造微通道,并且对可用于PCR,蛋白质相互作用和细胞的生物分子的影响最小,而其他则在处理表面后使用。发现在构建芯片实验室/微量分析系统和芯片器官设备中的重要性。

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