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An Innovative Strategy for the Fabrication of Functional Cell Sheets Using an Electroactive Conducting Polymer

机译:使用电活性导电聚合物制造功能性电池片的创新策略

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摘要

Here, we report the development of an electric field-assisted methodology for constructing 3D C2C12 cell sheets with the potential for cell surface modification. In this method, a conducting polymer, polypyrrole (Ppy), is electrodeposited via biotin doping, and then chemical conjugation of biotinylated bone morphogenetic protein 2 (BMP2) is achieved using a biotin-streptavidin cross-linker. Subsequently, C2C12 cells are cultured on BMP2-immobilized Ppy surfaces to induce interactions between cell surface receptors and bound BMP2 ligands. Following these procedures, layers of BMP2-immobilized cells can be easily detached from the Ppy surface by applying an electrical potential. This novel method results in high affinity, ligand-bound cell sheets, which exhibit homogeneous coverage with membrane-bound proteins and signal activation that occurs via maximal receptor accessibility. Using this strategy to engineer the cell surface with desirable ligands results in structures that mimic in vivo tissues; thus, the method reported here has potential applications in regenerative medicine and tissue engineering.
机译:在这里,我们报告建立具有细胞表面修饰潜力的3D C2C12细胞片的电场辅助方法的发展。在该方法中,通过生物素掺杂电沉积导电聚合物聚吡咯(Ppy),然后使用生物素-链霉亲和素交联剂实现生物素化骨形态发生蛋白2(BMP2)的化学偶联。随后,将C2C12细胞培养在BMP2固定的Ppy表面上,以诱导细胞表面受体与结合的BMP2配体之间的相互作用。按照这些步骤,可以通过施加电势将BMP2固定的细胞层轻松地从Ppy表面分离。这种新方法产生了高亲和力的,配体结合的细胞片,该片表现出膜结合蛋白的均匀覆盖和通过最大受体可及性发生的信号激活。使用这种策略用所需的配体对细胞表面进行工程改造,可以得到模仿体内组织的结构;因此,本文报道的方法在再生医学和组织工程中具有潜在的应用。

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