Leifert Wayne R, François Maxime, Thomas Philip, Luther Ed, Holden Elena, Fenech Michael
CSIRO Food and Nutritional Sciences, Genome Health Nutrigenomics, Adelaide, SA, Australia.
Methods Cell Biol. 2011;102:321-39. doi: 10.1016/B978-0-12-374912-3.00013-4.
Laser scanning cytometry (LSC) can be used to quantify the fluorescence intensity or laser light loss (absorbance) of localized molecular targets within nuclear and cytoplasmic structures of cells while maintaining the morphological features of the examined tissue. It was aimed to develop an automated LSC protocol to study cellular and nuclear anomalies and DNA damage events in human buccal mucosal cells. Since the buccal micronucleus cytome assay has been used to measure biomarkers of DNA damage (micronuclei and/or nuclear buds), cytokinesis defects (binucleated cells), proliferative potential (basal cell frequency), and/or cell death (condensed chromatin, karyorrhexis, and pyknotic and karyolytic cells), the following automated LSC protocol describes scoring criteria for these same parameters using an automated imaging LSC. In this automated LSC assay, cells derived from the buccal mucosa were harvested from the inside of patient's mouths using a small-headed toothbrush. The cells were washed to remove any debris and/or bacteria, and a single-cell suspension prepared and applied to a microscope slide using a cytocentrifuge. Cells were fixed and stained with Feulgen and Light Green stain allowing both chromatic and fluorescent analysis to be undertaken simultaneously with the use of an LSC.
激光扫描细胞术(LSC)可用于量化细胞的细胞核和细胞质结构内局部分子靶点的荧光强度或激光光损失(吸光度),同时保持被检查组织的形态特征。本研究旨在开发一种自动化的LSC方案,以研究人类颊黏膜细胞中的细胞和核异常以及DNA损伤事件。由于颊黏膜微核细胞分析法已被用于测量DNA损伤的生物标志物(微核和/或核芽)、胞质分裂缺陷(双核细胞)、增殖潜力(基底细胞频率)和/或细胞死亡(浓缩染色质、核溶解和固缩及核溶解细胞),以下自动化LSC方案描述了使用自动化成像LSC对这些相同参数的评分标准。在这种自动化LSC检测中,使用小头牙刷从患者口腔内部采集颊黏膜来源的细胞。将细胞洗涤以去除任何碎片和/或细菌,制备单细胞悬液并使用细胞离心机将其应用于显微镜载玻片上。细胞用福尔根和亮绿染色剂固定和染色,以便在使用LSC的同时进行彩色和荧光分析。