Torres Alexis J, Wu Min, Holowka David, Baird Barbara
Department of Chemistry and Chemical Biology, Cornell University, Ithaca, New York 14853, USA.
Annu Rev Biophys. 2008;37:265-88. doi: 10.1146/annurev.biophys.36.040306.132651.
Advances in microfabrication and nanofabrication are opening new opportunities to investigate complicated questions of cell biology in ways not before possible. In particular, the spatial regulation of cellular processes can be examined by engineering the chemical and physical environment to which the cell responds. Lithographic methods and selective chemical modification schemes can provide biocompatible surfaces that control cellular interactions on the micron and submicron scales on which cells are organized. Combined with fluorescence microscopy and other approaches of cell biology, a widely expanded toolbox is becoming available. This review illustrates the potential of these integrated engineering tools, with an emphasis on patterned surfaces, for investigating fundamental mechanisms of receptor-mediated signaling in cells. We highlight progress made with immune cells and in particular with the IgE receptor system, which has been valuable for developing technology to gain new information about spatial regulation in signaling events.
微纳制造技术的进步为以前所未有的方式研究细胞生物学的复杂问题带来了新机遇。具体而言,通过设计细胞响应的化学和物理环境,可以研究细胞过程的空间调控。光刻方法和选择性化学修饰方案能够提供生物相容性表面,在细胞组织的微米和亚微米尺度上控制细胞间相互作用。结合荧光显微镜和其他细胞生物学方法,一个广泛扩展的工具箱正在形成。本综述阐述了这些集成工程工具,特别是图案化表面在研究细胞中受体介导信号传导基本机制方面的潜力。我们重点介绍了免疫细胞尤其是IgE受体系统所取得的进展,这对于开发获取信号传导事件中空间调控新信息的技术具有重要价值。