Parslow Adam C, Clayton Andrew H A, Lock Peter, Scott Andrew M
Tumour Targeting Laboratory, Olivia Newton-John Cancer Research Institute; School of Cancer Medicine, La Trobe University.
Centre for Micro-Photonics, Faculty of Science, Engineering and Technology, Swinburne University of Technology.
J Vis Exp. 2018 Aug 2(138):57164. doi: 10.3791/57164.
Confocal microscopy provides an accessible methodology to capture sub-cellular interactions critical for the characterization and further development of pre-clinical agents labeled with fluorescent probes. With recent advancements in antibody based cytotoxic drug delivery systems, understanding the alterations induced by these agents within the realm of receptor aggregation and internalization is of critical importance. This protocol leverages the well-established methodology of fluorescent immunocytochemistry and the open source FIJI distribution of ImageJ, with its inbuilt autocorrelation and image mathematical functions, to perform spatial image correlation spectroscopy (ICS). This protocol quantitates the fluorescent intensity of labeled receptors as a function of the beam area of the confocal microscope. This provides a quantitative measure of the state of target molecule aggregation on the cell surface. This methodology is focused on the characterization of static cells with potential to expand into temporal investigations of receptor aggregation. This protocol presents an accessible methodology to provide quantification of clustering events occurring at the cell surface, utilizing well established techniques and non-specialized imaging apparatus.
共聚焦显微镜提供了一种可及的方法,用于捕捉亚细胞相互作用,这对于表征和进一步开发用荧光探针标记的临床前药物至关重要。随着基于抗体的细胞毒性药物递送系统的最新进展,了解这些药物在受体聚集和内化领域所诱导的变化至关重要。本方案利用了成熟的荧光免疫细胞化学方法以及开源的ImageJ的FIJI发行版及其内置的自相关和图像数学函数,来执行空间图像相关光谱法(ICS)。该方案将标记受体的荧光强度定量为共聚焦显微镜光束面积的函数。这提供了细胞表面靶分子聚集状态的定量测量。该方法专注于静态细胞的表征,并有潜力扩展到受体聚集的时间研究。本方案提出了一种可及的方法,利用成熟技术和非专业成像设备对细胞表面发生的聚集事件进行定量。