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A Rapid co-culture stamping device for studying intercellular communication

机译:用于研究细胞间通讯的快速共培养冲压装置

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摘要

Regulation of tissue development and repair depends on communication between neighbouring cells. Recent advances in cell micro-contact printing and microfluidics have facilitated the in-vitro study of homotypic and heterotypic cell-cell interaction. Nonetheless, these techniques are still complicated to perform and as a result, are seldom used by biologists. We report here development of a temporarily sealed microfluidic stamping device which utilizes a novel valve design for patterning two adherent cell lines with well-defined interlacing configurations to study cell-cell interactions. We demonstrate post-stamping cell viability of >95%, the stamping of multiple adherent cell types, and the ability to control the seeded cell density. We also show viability, proliferation and migration of cultured cells, enabling analysis of co-culture boundary conditions on cell fate. We also developed an in-vitro model of endothelial and cardiac stem cell interactions, which are thought to regulate coronary repair after myocardial injury. The stamp is fabricated using microfabrication techniques, is operated with a lab pipettor and uses very low reagent volumes of 20 μl with cell injection efficiency of >70%. This easy-to-use device provides a general strategy for micro-patterning of multiple cell types and will be important for studying cell-cell interactions in a multitude of applications.
机译:组织发育和修复的调节取决于相邻细胞之间的通讯。细胞微接触印刷和微流控技术的最新进展促进了同型和异型细胞间相互作用的体外研究。但是,这些技术执行起来仍然很复杂,因此生物学家很少使用它们。我们在这里报告了一种临时密封的微流体压印装置的开发,该装置利用一种新颖的阀门设计来以清晰的交错配置图案化两个贴壁细胞系,以研究细胞之间的相互作用。我们证明了> 95%的盖章后细胞活力,多种贴壁细胞类型的盖章以及控制接种细胞密度的能力。我们还显示了培养细胞的活力,增殖和迁移,从而能够分析细胞命运的共培养边界条件。我们还开发了内皮和心脏干细胞相互作用的体外模型,该模型被认为可调节心肌损伤后的冠状动脉修复。压模是使用微细加工技术制造的,使用实验室移液器进行操作,使用的试剂体积非常小,仅为20μl,细胞注入效率> 70%。这种易于使用的设备为多种细胞类型的微图案化提供了通用策略,对于研究多种应用中的细胞间相互作用至关重要。

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