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A versatile modular bioreactor platform for Tissue Engineering
Authors:Sebastian Schuerlein  Thomas Schwarz  Steffan Krziminski  Sabine Gätzner  Anke Hoppensack  Ivo Schwedhelm  Matthias Schweinlin  Heike Walles  Jan Hansmann
Affiliation:1. University Hospital Wuerzburg, Department Tissue Engineering and Regenerative Medicine (TERM), Wuerzburg, Germany;2. Translational Center Wuerzburg of the Fraunhofer Institute for Interfacial Engineering and Biotechnology (IGB), Wuerzburg, Germany
Abstract:Tissue Engineering (TE) bears potential to overcome the persistent shortage of donor organs in transplantation medicine. Additionally, TE products are applied as human test systems in pharmaceutical research to close the gap between animal testing and the administration of drugs to human subjects in clinical trials. However, generating a tissue requires complex culture conditions provided by bioreactors. Currently, the translation of TE technologies into clinical and industrial applications is limited due to a wide range of different tissue‐specific, non‐disposable bioreactor systems. To ensure a high level of standardization, a suitable cost‐effectiveness, and a safe graft production, a generic modular bioreactor platform was developed. Functional modules provide robust control of culture processes, e.g. medium transport, gas exchange, heating, or trapping of floating air bubbles. Characterization revealed improved performance of the modules in comparison to traditional cell culture equipment such as incubators, or peristaltic pumps. By combining the modules, a broad range of culture conditions can be achieved. The novel bioreactor platform allows using disposable components and facilitates tissue culture in closed fluidic systems. By sustaining native carotid arteries, engineering a blood vessel, and generating intestinal tissue models according to a previously published protocol the feasibility and performance of the bioreactor platform was demonstrated.
Keywords:Clinical application  Industrial application  Modular bioreactor platform  Regenerative Medicine  Tissue Engineering
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