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Design and implementation of a low cost bio-printer modification, allowing for switching between plastic and gel extrusion

机译:设计和实施低成本生物打印机改性,允许在塑料和凝胶挤出之间切换

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Due to the high cost of bioprinters they are not feasible for proof of concept experiments or educational purposes. Furthermore, the more affordable DIY methods all disable the plastic printing capability of the original printer. Here we present an affordable bio-printing modification that is easy to install and maintains the original capabilities of the printer. The modification used mostly 3D printed parts and is based on the popular, open-source Prusa i3 3D printer. The modifications are kept as simple as possible and uses standard slicing software, allowing for installation by less experienced builders. By using disposable syringes and easily sterilizable parts, an aseptic bioprinting setup can be achieved, depending on the environment. It also allows for 2 component printing as well as UV curing. The bio-printing and curing capabilities were shown by printing and curing an artificial biofilm of an electro-active bacteria, Geobacter sulfurreducens, onto a carbon-cloth electrode which was used in a microbial fuel cell.
机译:由于生物制剂的高成本,他们对概念实验或教育目的的证明是不可行的。此外,更实惠的DIY方法都禁用原始打印机的塑料印刷能力。在这里,我们提供了一种经济实惠的生物印刷修改,易于安装和维护打印机的原始功能。该修改主要用于3D印刷部件,基于流行的开源PRUSA I3 3D打印机。修改保持尽可能简单,并使用标准切片软件,允许安装不太经验丰富的建筑商。通过使用一次性注射器和易于灭菌的部件,可以根据环境实现无菌生物印刷机设置。它还允许2个组分印刷以及UV固化。通过印刷和固化在微生物燃料电池中使用的碳布电极上的电活性细菌的人工生物膜的人工生物膜来显示生物印刷和固化能力。

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