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Rapid Engineering of Three-Dimensional, Multicellular Tissues With Polymeric Scaffolds

机译:利用聚合物支架快速设计三维多细胞组织

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A process has been developed for the rapid tissue engineering of multicellu-lar-tissue-equivalent assemblies by the controlled enzymatic degradation of polymeric beads in a low-fluid-shear bioreactor. In this process, the porous polymeric beads serve as temporary scaffolds to support the assemblies of cells in a tissuelike 3D configuration during the critical initial growth phases of attachment of anchorage-dependent cells, aggregation of the cells, and formation of a 3D extracellular matrix. Once therncells are assembled into a 3D array and enmeshed in a structural supportive 3D extracellular matrix (ECM), the polymeric scaffolds can be degraded in the low-fluid-shear environment of the NASA-designed bioreactor. The natural 3D tissuelike assembly, devoid of any artificial support structure, is maintained in the low-shear bioreactor environment by the newly formed natural cellular/ECM. The elimination of the artificial scaffold allows normal tissue structure and function.
机译:已经开发了一种通过在低流体剪切生物反应器中控制聚合物珠的酶促降解来快速进行多细胞组织等效组件的组织工程化的方法。在此过程中,多孔聚合物珠粒用作临时支架,以在贴壁依赖性细胞附着,细胞聚集和3D细胞外基质形成的关键初始生长阶段,以组织状3D构型支持细胞的组装。一旦将细胞组装成3D阵列并嵌入结构支持3D细胞外基质(ECM)中,就可以在NASA设计的生物反应器的低流体剪切环境中降解聚合物支架。通过新形成的天然细胞/ ECM,可在低剪切生物反应器环境中保持不含任何人工支撑结构的天然3D组织样组件。去除人工支架允许正常的组织结构和功能。

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    《NASA Tech Briefs》 |2007年第10期|6870|共2页
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  • 正文语种 eng
  • 中图分类 航空;
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