Department of Radiology and Imaging Sciences, Indiana University School of Medicine, Indianapolis, IN, USA.
Indiana Center for Musculoskeletal Health, Indiana University School of Medicine, Indianapolis, IN, USA.
Ann Biomed Eng. 2024 Jun;52(6):1678-1692. doi: 10.1007/s10439-024-03481-5. Epub 2024 Mar 26.
We developed the open-source bIUreactor research platform for studying 3D structured tissues. The versatile and modular platform allows a researcher to generate 3D tissues, culture them with oxygenated perfusion, and provide cyclic loading, all in their own lab (in laboratorium) for an all in cost of $8,000 including 3D printer, printing resin, and electronics. We achieved this by applying a design philosophy that leverages 3D printing, open-source software and hardware, and practical techniques to produce the following: 1. perfusible 3D tissues, 2. a bioreactor chamber for tissue culture, 3. a module for applying cyclic compression, 4. a peristaltic pump for providing oxygenated perfusion to 3D tissues, 5. motor control units, and 6. open-source code for running the control units. By making it widely available for researchers to investigate 3D tissue models and easy for them to use, we intend for the bIUreactor to democratize 3D tissue research, therefore increasing the pace and scale of biomedical research discoveries using 3D tissue models.
我们开发了开源的 bIUreactor 研究平台,用于研究 3D 结构组织。该多功能且模块化的平台允许研究人员在自己的实验室中生成 3D 组织,用充氧灌注培养它们,并提供循环加载,所有这些的总成本为 8000 美元,包括 3D 打印机、打印树脂和电子设备。我们通过应用一种设计理念实现了这一目标,该理念利用 3D 打印、开源软件和硬件以及实用技术来生产以下产品:1. 可灌注的 3D 组织,2. 用于组织培养的生物反应器室,3. 用于施加循环压缩的模块,4. 用于向 3D 组织提供充氧灌注的蠕动泵,5. 电机控制单元,以及 6. 运行控制单元的开源代码。通过广泛提供给研究人员研究 3D 组织模型,并使他们易于使用,我们希望 bIUreactor 能够使 3D 组织研究民主化,从而加快和扩大使用 3D 组织模型进行生物医学研究发现的步伐。