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The Submerged Printing of Cells onto a Modified Surface Using a Continuous Flow Microspotter

机译:使用连续流动微量点样仪将细胞浸没在改性表面上的浸入式印刷

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摘要

The printing of cells for microarray applications possesses significant challenges including the problem of maintaining physiologically relevant cell phenotype after printing, poor organization and distribution of desired cells, and the inability to deliver drugs and/or nutrients to targeted areas in the array. Our 3D microfluidic printing technology is uniquely capable of sealing and printing arrays of cells onto submerged surfaces in an automated and multiplexed manner. The design of the microfluidic cell array (MFCA) 3D fluidics enables the printhead tip to be lowered into a liquid-filled well or dish and compressed against a surface to form a seal. The soft silicone tip of the printhead behaves like a gasket and is able to form a reversible seal by applying pressure or backing away. Other cells printing technologies such as pin or ink-jet printers are unable to print in submerged applications. Submerged surface printing is essential to maintain phenotypes of cells and to monitor these cells on a surface without disturbing the material surface characteristics. By printing onto submerged surfaces, cell microarrays are produced that allow for drug screening and cytotoxicity assessment in a multitude of areas including cancer, diabetes, inflammation, infections, and cardiovascular disease.
机译:用于微阵列应用的细胞印刷面临重大挑战,包括在印刷后保持生理相关的细胞表型,所需细胞的不良组织和分布以及无法将药物和/或营养物质递送至阵列中目标区域的问题。我们的3D微流体打印技术具有独特的能力,能够以自动化和多路复用的方式将细胞阵列密封并打印到浸没表面上。微流控细胞阵列(MFCA)3D流体技术的设计使打印头尖端可以降低到充满液体的井或培养皿中,并压在表面上以形成密封。打印头的柔软硅胶尖端的行为就像垫圈一样,可以通过施加压力或后退来形成可逆密封。其他电池打印技术(例如针式打印机或喷墨打印机)无法在水下应用程序中进行打印。浸没表面印刷对于保持细胞表型和监视表面上的这些细胞而不干扰材料表面特性至关重要。通过在淹没表面上印刷,可生产出细胞微阵列,可在包括癌症,糖尿病,炎症,感染和心血管疾病在内的许多领域进行药物筛选和细胞毒性评估。

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