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Application of cellular micropatterns to miniaturized cell-based biosensor

机译:细胞微模式在基于细胞的微型生物传感器中的应用

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摘要

Because of strong demands for high throughput or high content cell-based assay, significant efforts have focused on the assay miniaturization by fabricating cell microarray using a variety of cell patterning techniques such as spotting, photolithography or soft lithography and by integrating cell microarray into microfluidic devices. Response of cells cultured on microarray can be monitored by using either electrochemical or optical detection methods. Impedancebased detection and potential-based detection have been widely used for electrochemical detection, while optical detection relies mostly on the fluorescence and bioluminescence-based techniques. Resultant cell microarray-based biosensor can be applied for high throughput/content drug screening and detection of pathogens, pollutants and warfare agents. For the successful application of cell-based biosensors to various areas, multi-phenotypic cell microarray should be developed and cells on microarray must be cultured in 3-dimensional environment as they do in real tissue to obtain accurate response of cells against target analytes.
机译:由于对高通量或高含量基于细胞的测定的强烈需求,通过使用各种细胞构图技术(例如点样,光刻或软光刻)制造细胞微阵列,以及将细胞微阵列集成到微流控设备中,大量的精力集中在测定微型化上。可以使用电化学或光学检测方法监测在微阵列上培养的细胞的反应。基于阻抗的检测和基于电势的检测已广泛用于电化学检测,而光学检测主要依赖于基于荧光和生物发光的技术。基于结果细胞微阵列的生物传感器可用于高通量/含量药物筛选以及病原体,污染物和战剂的检测。为了成功地将基于细胞的生物传感器应用于各个领域,应该开发多表型细胞微阵列,并且必须像在真实组织中那样,在3维环境中培养微阵列上的细胞,以获得对目标分析物的准确反应。

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