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3D-Printed Sensors and Actuators in Cell Culture and Tissue Engineering: Framework and Research Challenges

机译:细胞培养和组织工程中的3D印刷传感器和执行器:框架和研究挑战

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摘要

Three-dimensional printing technologies have been recently proposed to monitor cell cultures and implement cell bioreactors for different biological applications. In tissue engineering, the control of tissue formation is crucial to form tissue constructs of clinical relevance, and 3D printing technologies can also play an important role for this purpose. In this work, we study 3D-printed sensors that have been recently used in cell culture and tissue engineering applications in biological laboratories, with a special focus on the technique of electrical impedance spectroscopy. Furthermore, we study new 3D-printed actuators used for the stimulation of stem cells cultures, which is of high importance in the process of tissue formation and regenerative medicine. Key challenges and open issues, such as the use of 3D printing techniques in implantable devices for regenerative medicine, are also discussed.
机译:最近已经提出了三维印刷技术来监测细胞培养物并对不同的生物应用实施细胞生物反应器。在组织工程中,组织形成的控制对于形成临床相关性的组织构建至关重要,并且3D印刷技术也可以为此目的发挥重要作用。在这项工作中,我们研究了最近用于在生物实验室中的细胞培养和组织工程应用中使用的3D印刷传感器,专注于电阻抗光谱技术。此外,我们研究了用于刺激干细胞培养物的新型3D印刷致动器,这在组织形成和再生医学过程中具有很高的重要性。还讨论了关键挑战和开放问题,例如在植入装置中使用3D打印技术进行再生医学。

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