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High-throughput microscopy must re-invent the microscope rather than speed up its functions

机译:高通量显微镜必须重新发明显微镜而不是加快其功能

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摘要

Knowledge gained from the revolutions in genomics and proteomics has helped to identify many of the key molecules involved in cellular signalling. Researchers, both in academia and in the pharmaceutical industry, now screen, at a sub-cellular level, where and when these proteins interact. Fluorescence imaging and molecular labelling combine to provide a powerful tool for real-time functional biochemistry with molecular resolution. However, they traditionally have been work-intensive, required trained personnel, and suffered from low through-put due to sample preparation, loading and handling. The need for speeding up microscopy is apparent from the tremendous complexity of cellular signalling pathways, the inherent biological variability, as well as the possibility that the same molecule plays different roles in different sub-cellular compartments. Research institutes and companies have teamed up to develop imaging cytometers of ever-increasing complexity. However, to truly go high-speed, sub-cellular imaging must free itself from the rigid framework of current microscopes.
机译:从基因组学和蛋白质组学的革命中获得的知识有助于鉴定出许多与细胞信号传导有关的关键分子。学术界和制药业的研究人员现在都在亚细胞水平上筛选这些蛋白质相互作用的时间和地点。荧光成像和分子标记相结合,为具有分子分辨率的实时功能性生物化学提供了强大的工具。然而,它们传统上是劳动密集型的,需要受过训练的人员,并且由于样品制备,装载和处理而导致通量较低。从细胞信号通路的巨大复杂性,固有的生物学变异性以及同一分子在不同的亚细胞区室中发挥不同作用的可能性来看,加速显微镜的需求显而易见。科研机构和公司已经合作开发复杂程度不断提高的成像细胞仪。但是,要真正实现高速化,亚细胞成像必须摆脱当前显微镜的严格框架。

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