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首页> 外文期刊>Biotechnology Journal: Healthcare,Nutrition,Technology >Towards Self-Regulated Bioprocessing: A Compact Benchtop Bioreactor System for Monitored and Controlled 3D Cell and Tissue Culture
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Towards Self-Regulated Bioprocessing: A Compact Benchtop Bioreactor System for Monitored and Controlled 3D Cell and Tissue Culture

机译:朝来自调节的生物处理:用于监测和控制3D细胞和组织培养的紧凑型台式生物反应器系统

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摘要

Bioreactors are crucial tools for the manufacturing of living cell-based tissue engineered products. However, to reach the market successfully, higher degrees of automation, as well as a decreased footprint still need to be reached. In this study, the use of a benchtop bioreactor for in vitro perfusion culture of scaffold-based tissue engineering constructs is assessed. A low-footprint benchtop bioreactor system is designed, comprising a single-use fluidic components and a bioreactor housing. The bioreactor is operated using an in-house developed program and the culture environment is monitored by specifically designed sensor ports. A gas-exchange module is incorporated allowing for heat and mass transfers. Titanium-based scaffolds are seeded with human periosteum-derived cells and cultured up to 3 weeks. The benchtop bioreactor constructs are compared to benchmark perfusion systems. Live/Dead stainings, DNA quantifications, glucose consumption, and lactate production assays confirm that the constructs cultured in the benchtop bioreactor grew similarly to the benchmark systems. Manual regulation of the system set points enabled efficient alteration of the culture environment in terms of temperature, pH, and dissolved oxygen. This study provides the necessary basis for the development of low-footprint, automated, benchtop perfusion bioreactors and enables the implementation of active environment control.
机译:生物反应器是制造基于活细胞的组织工程产品的关键工具。然而,为了成功地达到市场,仍然需要达到更高程度的自动化,以及仍然需要达到减少的占地面积。在该研究中,评估了使用支撑基于组织工程构建体的体外灌注培养的Benchtop生物反应器。设计了低脚印台式生物反应器系统,包括单一使用流体组件和生物反应器外壳。使用内部开发的程序操作生物反应器,并通过专门设计的传感器端口监测培养环境。纳入气体交换模块,允许热量和质量传递。基于钛的支架与人骨膜衍生的细胞接种并培养3周。将Benchtop生物反应器构建体与基准灌注系统进行比较。 Live / Dead染色,DNA量化,葡萄糖消耗和乳酸生产测定证实,在Benchtop生物反应器中培养的构建体与基准系统相似。系统设定点的手动调节能够在温度,pH和溶解氧方面有效地改变培养环境。本研究为开发低占地面积,自动化的台式灌注生物反应器提供了必要的基础,并实现了积极环境控制的实现。

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