首页> 外文会议>Nano/Micro Engineered and Molecular Systems (NEMS), 2012 7th IEEE International Conference on >3D microstructure integrated bioreactor system for transgenic mice thick liver tissue culture
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3D microstructure integrated bioreactor system for transgenic mice thick liver tissue culture

机译:用于转基因小鼠厚肝组织培养的3D微结构集成生物反应器系统

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摘要

A bioreactor system with 3-diementional (3D) Poly ethylene glycol diacrylate (PEGDA) structures in the culture-well to provide 3D culturing conditions is proposed here. The culture medium diffused through the tissue cause of the nozzle shaped flow channel at the outlet of each bioreactor and tissue being held between PEGDA microstructures. This helps in delivering the required nutrients to core of the tissue, eliminating the mass transfer problem. Presence of PEGDA based microstructures resulted in better circulation of medium around the liver tissue and mesothelial cells providing 3D microenvironment and to retain intact architecture. The flow rate was 20 µl/min and the flow direction is changed every 12hrs for effective removal of waste products and toxins. Tissues slices of 2mm thick have been cultured for 12 days with 76% viable cells.
机译:本文提出了一种生物反应器系统,该系统在培养孔中具有3维(3D)聚乙二醇二丙烯酸酯(PEGDA)结构,以提供3D培养条件。通过组织扩散的培养基在每个生物反应器的出口处形成喷嘴状流动通道,并且组织被保持在PEGDA微结构之间。这有助于将所需的养分输送到组织的核心,从而消除了传质问题。基于PEGDA的微结构的存在导致培养基在肝脏组织和间皮细胞周围的循环更好,从而提供了3D微环境并保留了完整的结构。流速为20 µl / min,每12小时更改一次流向,以有效去除废物和毒素。将2mm厚的组织切片与76%的活细胞培养12天。

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