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[运用多重荧光原位杂交联合全染色体描绘技术分析骨髓增生异常综合征患者的复杂染色体畸变]

[Analysis of complex chromosomal aberrations in patients with myelodysplastic syndromes using multiplex fluorescence in situ hybridization combined with whole chromosome painting].

作者信息

Chen Li-juan, Li Jian-yong, Xiao Bing, Zhu Yu, Liu Qiong, Pan Jin-lan, Qiu Hai-rong, Fan Lei, Zhang Su-jiang, Lu Rui-nan, Xu Wei, Xue Yong-quan

机构信息

Deartment of Hematology, the First Affiliated Hospital, Nanjing Medical University, Jiangsu Province Hospital, Nanjing, Jiangsu, 210029 PR China.

出版信息

Zhonghua Yi Xue Yi Chuan Xue Za Zhi. 2007 Dec;24(6):635-9.

Abstract

OBJECTIVE

To explore the value of multiplex fluorescence in situ hybridization (M-FISH) in combination with whole chromosome painting (WCP) in the detection of complex chromosomal aberrations (CCAs) in myelodysplastic syndromes (MDS).

METHODS

M-FISH was used in seven MDS patients with R-banding CCAs to refine the complex chromosomal rearrangements, and to identify cryptic translocations and characterization of marker chromosomes. Dual-color WCP procedures were further performed in 7 cases to confirm some rearrangements detected by M-FISH.

RESULTS

M-FISH confirmed all results of R-banding. The composition and origin of 6 kinds of marker chromosomes, 9 kinds of chromosomes with additional material undetermined and 5 kinds of derivative chromosomes undefined by conventional cytogenetics (CC) were defined after M-FISH analysis; four kinds of cryptic translocations overlooked by CC were found on derivative chromosomes and previously normal appearing chromosomes. In addition, M-FISH revealed some nonrandom aberrations: aberrations involving chromosome 17 and -5/5q- were the two most frequent aberrations. Some misclassified and missed chromosomal aberrations by M-FISH were corrected by WCP.

CONCLUSION

M-FISH is a powerful molecular cytogenetic tool in clarification of CCAs. Complementary WCP helps us to identify misclassified and missed chromosomal aberrations by M-FISH. CC in combination with molecular cytogenetic techniques, such as M-FISH and WCP, can unravel complex chromosomal aberrations more precisely.

摘要

目的

探讨多重荧光原位杂交(M-FISH)联合全染色体涂染(WCP)技术在检测骨髓增生异常综合征(MDS)复杂染色体异常(CCA)中的价值。

方法

对7例具有R显带CCA的MDS患者采用M-FISH技术来细化复杂的染色体重排,识别隐匿性易位并鉴定标记染色体的特征。对7例患者进一步进行双色WCP操作,以确认M-FISH检测到的一些重排。

结果

M-FISH证实了所有R显带的结果。经过M-FISH分析,确定了6种标记染色体、9种额外物质未确定的染色体以及5种传统细胞遗传学(CC)未定义的衍生染色体的组成和来源;在衍生染色体和先前看似正常的染色体上发现了4种被CC遗漏的隐匿性易位。此外,M-FISH还揭示了一些非随机异常:涉及17号染色体和-5/5q-的异常是最常见的两种异常。WCP纠正了M-FISH分类错误和遗漏的染色体异常。

结论

M-FISH是一种用于阐明CCA的强大分子细胞遗传学工具。互补的WCP有助于我们识别M-FISH分类错误和遗漏的染色体异常。CC联合M-FISH和WCP等分子细胞遗传学技术能够更精确地解析复杂的染色体异常。

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