The Alexander Silberman Institute of Life Sciences, The Hebrew University of Jerusalem, Jerusalem 91904, Israel.
Curr Opin Biotechnol. 2012 Feb;23(1):2-8. doi: 10.1016/j.copbio.2011.11.024. Epub 2011 Dec 14.
Motivated by the advantages endowed by high-throughput analysis, researchers have succeeded in incorporating multiple reporter cells into a single platform; the technology now allows the simultaneous scrutiny of a large collection of sensor strains. We review current aspects in cell array technology with emphasis on microbial sensor arrays. We consider various techniques for patterning live cells on solid surfaces, describe different array-based applications and devices, and highlight recent efforts for live cell storage. We review mathematical approaches for deciphering the data emanating from bioreporter collections, and discuss the future of single cell arrays. Innovative technologies for cell patterning, preservation and interpretation are continuously being developed; when they all mature, cell arrays may become an efficient analytical tool, in a scope resembling that of DNA microarray biochips.
受高通量分析带来的优势的启发,研究人员成功地将多个报告细胞整合到一个单一的平台中;该技术现在允许同时仔细检查大量传感器菌株。我们回顾了细胞阵列技术的当前方面,重点是微生物传感器阵列。我们考虑了在固体表面上对活细胞进行图案化的各种技术,描述了不同的基于阵列的应用和设备,并强调了用于活细胞存储的最新努力。我们回顾了用于破译生物报告器收集的数据的数学方法,并讨论了单细胞阵列的未来。用于细胞图案化、保存和解释的创新技术正在不断发展;当它们全部成熟时,细胞阵列可能成为一种有效的分析工具,其范围类似于 DNA 微阵列生物芯片。