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Spin∞: an updated miniaturized spinning bioreactor design for the generation of human cerebral organoids from pluripotent stem cells

机译:Spin∞:一种更新的小型旋转生物反应器设计,用于从多能干细胞生成人脑类器官

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Three-dimensional (3D) brain organoids derived from human pluripotent stem cells (hPSCs), including human embryonic stem cells (hESCs) and induced pluripotent stem cells (iPSCs), have become a powerful system to study early development events and to model human disease. Cerebral organoids are generally produced in static culture or in a culture vessel with active mixing, and the two most widely used systems for mixing are a large spinning flask and a miniaturized multi-well spinning bioreactor (also known as Spin Omega (SpinΩ)). The SpinΩ provides a system that is amenable to drug testing, has increased throughput and reproducibility, and utilizes less culture media. However, technical limitations of this system include poor stability of select components and an elevated risk of contamination due to the inability to sterilize the device preassembled. Here, we report a new design of the miniaturized bioreactor system, which we term Spinfinity (Spin∞) that overcomes these concerns to permit long-term experiments. This updated device is amenable to months-long (over 200?days) experiments without concern of unexpected malfunctions.
机译:源自人类多能干细胞(hPSC)(包括人类胚胎干细胞(hESCs)和诱导性多能干细胞(iPSC))的三维(3D)脑类器官已成为研究早期发育事件和模拟人类疾病的强大系统。通常在静态培养或主动混合的培养容器中生产脑类器官,两种最广泛使用的混合系统是大型旋转烧瓶和微型多孔自旋生物反应器(也称为Spin Omega(SpinΩ))。 SpinΩ提供了一种适用于药物测试的系统,具有增加的通量和可重复性,并使用了较少的培养基。但是,该系统的技术局限性包括所选组件的稳定性差以及由于无法对预组装的设备进行灭菌而导致的污染风险升高。在这里,我们报告了一种小型化生物反应器系统的新设计,我们称其为Spinfinity(Spin∞),它克服了这些问题,可以进行长期实验。此更新的设备可进行长达数月(超过200天)的实验,而无需担心意外故障。

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