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Design and validation of an osteochondral bioreactor for the screening of treatments for osteoarthritis

机译:设计和验证用于筛选骨关节炎治疗方法的骨软骨生物反应器

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摘要

Bioreactors are systems that can be used to monitor the response of tissues and cells to candidate drugs. Building on the experience developed in the creation of an osteochondral bioreactor, we have designed a new 3D printed system, which allows optical access to the cells throughout testing for in line monitoring. Because of the use of 3D printing, the fluidics could be developed in the third dimension, thus maintaining the footprint of a single well of a typical 96 well plate. This new design was optimized to achieve the maximum fluid transport through the central chamber, which corresponds to optimal nutrient or drug exposure. This optimization was achieved by altering each dimension of the bioreactor fluid path. A physical model for optimized drug exposure was then created and tested.
机译:生物反应器是可用于监测组织和细胞对候选药物反应的系统。基于在创建骨软骨生物反应器方面积累的经验,我们设计了一个新的3D打印系统,该系统可在整个测试过程中通过光学方式访问细胞,以进行在线监测。由于使用了3​​D打印,因此可以在三维中开发射流技术,从而保持了典型96孔板中单个孔的占地面积。优化了该新设计,以实现通过中央腔室的最大流体传输,这对应于最佳营养素或药物暴露。通过更改生物反应器流体路径的每个尺寸来实现此优化。然后创建并测试了优化药物暴露的物理模型。

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