Department of Molecular Genetics, Weizmann Institute of Science, Rehovot, Israel 76100.
J Cell Sci. 2011 Nov 15;124(Pt 22):3743-51. doi: 10.1242/jcs.087486.
The increasing availability and performance of automated scientific equipment in the past decades have brought about a revolution in the biological sciences. The ease with which data can now be generated has led to a new culture of high-throughput science, in which new types of biological questions can be asked and tackled in a systematic and unbiased manner. High-throughput microscopy, also often referred to as high-content screening (HCS), allows acquisition of systematic data at the single-cell level. Moreover, it allows the visualization of an enormous array of cellular features and provides tools to quantify a large number of parameters for each cell. These features make HCS a powerful method to create data that is rich and biologically meaningful without compromising systematic capabilities. In this Commentary, we will discuss recent work, which has used HCS, to demonstrate the diversity of applications and technological solutions that are evolving in this field. Such advances are placing HCS methodologies at the frontier of high-throughput science and enable scientists to combine throughput with content to address a variety of cell biological questions.
过去几十年中,自动化科学仪器的可用性和性能不断提高,给生物科学带来了一场革命。现在数据的生成变得更加容易,这导致了高通量科学的新文化,新的生物问题可以以系统和无偏倚的方式提出和解决。高通量显微镜,也常被称为高内涵筛选(HCS),允许在单细胞水平上获取系统数据。此外,它还可以可视化大量的细胞特征,并提供工具来量化每个细胞的大量参数。这些特性使得 HCS 成为一种强大的方法,可以在不影响系统能力的情况下创建丰富且具有生物学意义的数据。在这篇评论中,我们将讨论最近的工作,这些工作使用 HCS 展示了该领域中不断发展的各种应用和技术解决方案。这些进展将 HCS 方法置于高通量科学的前沿,使科学家能够将通量与内容相结合,解决各种细胞生物学问题。