首页> 美国卫生研究院文献>Oncology Letters >Fluorescence in situ hybridization testing of chromosomes 6 8 9 and 11 in melanocytic tumors is difficult to automate and reveals tumor heterogeneity in melanomas
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Fluorescence in situ hybridization testing of chromosomes 6 8 9 and 11 in melanocytic tumors is difficult to automate and reveals tumor heterogeneity in melanomas

机译:黑色素细胞肿瘤的染色体6、8、9和11的荧光原位杂交测试难以自动化并且揭示了黑色素瘤中的肿瘤异质性

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摘要

Malignant melanomas may be difficult to differentiate from benign nevi on the basis of histology. Contrary to nevi, the majority of melanomas harbor chromosomal imbalances. Comparative genomic hybridization-based and fluorescence in situ hybridization (FISH) tests can help differentiating malignant from benign tumors. In the present study, eight-bacterial artificial chromosome (BAC) probes targeting chromosomes 6, 8, 9 and 11 were tested by FISH, and compared with a commercial four-color FISH probe set targeting chromosomes 6 and 11 in a first set of 62 tissue microarray-included melanocytic tumors (47 melanomas and 15 nevi). A second set of 108 tumors (70 melanomas and 38 nevi) was analyzed with the eight-probes kit, and manual counting was compared with the newly developed automated FISH signals counting and with semi-quantitative visual detection of chromosomal imbalances. Intra-tumor heterogeneity was also evaluated in 12 melanomas and 10 patients with paired melanoma samples. Testing the tumors from the first set with the commercial kit and the eight-probes test permitted to correctly identify 45/47 and 47/47 melanomas, respectively. In the second tumor set, 65/70 malignant tumors presented at least one chromosomal imbalance, whereas none was detected in the nevi. The agreement between manual and automated signals counting was better in good-quality FISH slides compared with poor-quality slides. Semi-quantitative visual appreciation of chromosomal imbalances also reached strong agreement with exact manual counting. In addition, a frequent cytogenetic heterogeneity within melanomas and between paired tumors was noticed in patients with metastatic melanomas. To conclude, FISH testing targeting chromosomes 6, 8, 9 and 11 enabled to differentiate the majority of melanomas from nevi but was difficult to automate. Tumor cytogenetic heterogeneity was frequent and could impair FISH testing.
机译:根据组织学,恶性黑色素瘤可能难以与良性痣区分开。与痣相反,大多数黑色素瘤具有染色体失衡。基于基因组杂交的比较和荧光原位杂交(FISH)测试可以帮助区分良性肿瘤与恶性肿瘤。在本研究中,通过FISH测试了针对6、8、9和11号染色体的八细菌人工染色体(BAC)探针,并将其与针对62和9号染色体的商业四色FISH探针组进行了比较。组织芯片包括的黑素细胞瘤(47个黑色素瘤和15个痣)。使用八探针试剂盒分析了第二组108个肿瘤(70个黑色素瘤和38个痣),并将手动计数与新开发的自动FISH信号计数和半定量视觉检测染色体失衡进行了比较。还评估了12例黑色素瘤和10例成对的黑色素瘤样本中的肿瘤内异质性。用市售试剂盒测试第一组中的肿瘤,并允许八种探针测试分别正确识别45/47和47/47黑色素瘤。在第二组肿瘤中,65/70恶性肿瘤表现出至少一种染色体失衡,而在痣中未检测到。与低质量的幻灯片相比,高质量的FISH幻灯片中手动和自动信号计数之间的一致性更好。染色体不平衡的半定量视觉欣赏与精确的人工计数也达成了一致。另外,在转移性黑色素瘤患者中发现了黑色素瘤内部以及配对肿瘤之间频繁的细胞遗传异质性。总而言之,针对6号,8号,9号和11号染色体的FISH测试能够区分大多数黑色素瘤和痣,但很难实现自动化。肿瘤细胞遗传异质性很常见,可能会损害FISH检测。

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