Truong K, Boenders J, Maciorowski Z, Vielh P, Dutrillaux B, Malfoy B, Bourgeois C A
Institut Curie-CNRS UMR 147, Paris, France.
Anal Cell Pathol. 1997 May;13(3):137-46. doi: 10.1155/1997/297216.
The purpose of this study was to improve the detection of FISH signals, in order that spot counting by a fully automated image cytometer be comparable to that obtained visually under the microscope. Two systems of spot scoring, visual and automated counting, were investigated in parallel on stimulated human lymphocytes with FISH using a biotinylated centromeric probe for chromosome 3. Signal characteristics were first analyzed on images recorded with a coupled charge device (CCD) camera. Number of spots per nucleus were scored visually on these recorded images versus automatically with a DISCOVERY image analyzer. Several fluochromes, amplification and pretreatments were tested. Our results for both visual and automated scoring show that the tyramide amplification system (TSA) gives the best amplification of signal if pepsin treatment is applied prior to FISH. Accuracy of the automated scoring, however, remained low (58% of nuclei containing two spots) compared to the visual scoring because of the high intranuclear variation between FISH spots.
本研究的目的是改进荧光原位杂交(FISH)信号的检测,以使全自动图像细胞仪的斑点计数与在显微镜下目视获得的结果具有可比性。使用生物素化的3号染色体着丝粒探针,对刺激后的人淋巴细胞进行FISH检测,同时研究了两种斑点评分系统,即目视评分和自动计数。首先用电荷耦合器件(CCD)相机记录的图像分析信号特征。在这些记录的图像上,目视对每个细胞核的斑点数进行评分,并使用DISCOVERY图像分析仪自动评分。测试了几种荧光染料、扩增方法和预处理方法。我们的目视和自动评分结果均表明,如果在FISH之前进行胃蛋白酶处理,酪胺信号放大系统(TSA)能实现最佳的信号放大。然而,由于FISH斑点之间的核内差异较大,与目视评分相比,自动评分的准确性仍然较低(含两个斑点的细胞核占58%)。