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首页> 外文期刊>Acta biomaterialia >Fabrication of tunable micropatterned substrates for cell patterning via microcontact printing of polydopamine with poly(ethylene imine)-grafted copolymers
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Fabrication of tunable micropatterned substrates for cell patterning via microcontact printing of polydopamine with poly(ethylene imine)-grafted copolymers

机译:通过聚多巴胺与聚乙烯亚胺接枝共聚物的微接触印刷来制作可微图案化的可用于细胞图案化的基底

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Cell patterning is an important tool for biomedical research. In this work, we modified a technique combining mussel-inspired surface chemistry and microcontact printing (μCP) to modulate surface chemistry for cell patterning. Polymerized dopamine on poly(dimethylsiloxane) stamps was transferred to several cell-unfavorable substrates via μCP. Since cells only attached to the polydopamine (PDA)-imprinted areas, cell patterns were formed on a variety of cell-unfavorable surfaces. The stability of PDA imprints was proved under several harsh conditions. The cell affinity of PDA was modulated by co-deposition with several poly(ethylene imine) (PEI)-based copolymers, such as PEI, PEI-g-PEG (poly(ethylene glycol)) and PEI-g-galactose. The imprints of PDA/PEI-g-PEG provide the formation of cell patterns on cell-favorable substrates. Neuronal PC12 cells were patterned via imprinting of PDA/PEI, while HepG2/C3A cells were arranged on the imprint of PDA/PEI-g-galactose. Finally, co-culture of HepG2/C3A cells and L929 fibroblasts was accomplished by our micropatterning approach. This study demonstrated this simple and economic technique provides a powerful tool for development of functional patterned substrates for cell patterning. This technique should profit the preparation of cell patterns to study fundamental cell biology and to apply to biomedical engineering such as cell-based biosensors, diagnostic devices and tissue engineering.
机译:细胞图案化是生物医学研究的重要工具。在这项工作中,我们修改了结合贻贝启发式表面化学和微接触印刷(μCP)的技术,以调节用于细胞图案化的表面化学。通过μCP将聚(二甲基硅氧烷)印模上的聚合多巴胺转移到几种对细胞不利的底物上。由于细胞仅附着于聚多巴胺(PDA)印迹区域,因此在各种不利于细胞的表面上形成了细胞模式。在多种恶劣条件下证明了PDA压印的稳定性。 PDA的细胞亲和力可通过与几种基于聚亚乙基亚胺(PEI)的共聚物(例如PEI,PEI-g-PEG(聚乙二醇)和PEI-g-半乳糖)共沉积来调节。 PDA / PEI-g-PEG的印记可在对细胞有利的底物上形成细胞模式。神经元PC12细胞通过PDA / PEI的印迹进行图案化,而HepG2 / C3A细胞排列在PDA / PEI-g-半乳糖的印迹上。最后,通过我们的微模式方法完成了HepG2 / C3A细胞和L929成纤维细胞的共培养。这项研究表明,这种简单而经济的技术为开发用于细胞图案化的功能性图案化基材提供了强大的工具。这项技术应该有益于准备细胞模式以研究基础细胞生物学,并应用于生物医学工程,例如基于细胞的生物传感器,诊断设备和组织工程。

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