Alcor Damien, Gouzer Géraldine, Triller Antoine
Biologie Cellulaire de la Synapse, INSERM U789, Ecole Normale Supérieure, Paris, France.
Eur J Neurosci. 2009 Sep;30(6):987-97. doi: 10.1111/j.1460-9568.2009.06927.x. Epub 2009 Sep 4.
Single-particle tracking (SPT) applications have been growing rapidly in the field of cell biology, and in particular in neurobiology, as a means of unravelling the involvement of diffusion dynamics of neurotransmitter receptors and other synaptic proteins in the regulation of neuronal activity. Suitable probes and technological improvements make SPT more accessible than it used to be and open up broad applications in cellular biology. In this technical highlight, we give an overview of the experimental approach in SPT. The concepts and results in neurobiology have already been the object of detailed reviews. Here, we focus on a qualitative description of the implementation of SPT, from molecule labelling to acquisition, data treatment and analysis of protein diffusion properties. Constraints, limitations and future developments are discussed.
单粒子追踪(SPT)应用在细胞生物学领域,尤其是神经生物学领域发展迅速,它是一种揭示神经递质受体和其他突触蛋白的扩散动力学在神经元活动调节中的作用的手段。合适的探针和技术改进使SPT比以往更容易实现,并在细胞生物学中开辟了广泛的应用。在本技术亮点中,我们概述了SPT的实验方法。神经生物学中的概念和结果已经是详细综述的对象。在这里,我们重点对SPT的实施进行定性描述,从分子标记到采集、数据处理以及蛋白质扩散特性分析。我们还讨论了限制因素、局限性和未来发展。