Heng H H Q, Ye C J, Yang F, Ebrahim S, Liu G, Bremer S W, Thomas C M, Ye J, Chen T J, Tuck-Muller C, Yu J W, Krawetz S A, Johnson A
Center for Molecular Medicine and Genetics, Department of Pathology, Wayne State University School of Medicine, Detroit, Michigan, USA.
Clin Genet. 2003 May;63(5):358-67. doi: 10.1034/j.1399-0004.2003.00072.x.
The significance of complex chromosomal rearrangements presents a diagnostic dilemma. In the past, the use of G-banding coupled with fluorescence in situ hybridization (FISH) has been the standard approach. The recent development of spectral karyotyping (SKY) and multicolor FISH (M-FISH) has resulted in an increased accuracy of identification of marker or other complex chromosomal rearrangements. However, owing to the additional cost and time associated with SKY or M-FISH, and the restricted availability of such imaging facilities in many centers, it is not feasible to perform these procedures routinely on every sample. In addition, the identification of an aberration by SKY or M-FISH will often require confirmation by FISH. A practical approach is needed to take advantage of the complementary strengths of each method. In our center we utilize an algorithm that dictates the use of routine G-banding for the initial preliminary evaluation of a patient, followed by SKY characterization if marker chromosomes or complex translocations are detected by the G-banding analysis. According to this algorithm, FISH is used to verify the results once the origin of the abnormal chromosome has been determined by SKY. To demonstrate the effectiveness of this algorithm, we have analyzed both amniocyte and lymphocyte slides, using a combination of G-banding, SKY, and FISH. Our results confirm that an algorithm which selectively uses SKY or M-FISH will provide an efficient and improved method for pre- and post-natal chromosomal analysis.
复杂染色体重排的意义带来了诊断难题。过去,G显带结合荧光原位杂交(FISH)一直是标准方法。光谱核型分析(SKY)和多色FISH(M-FISH)的最新发展提高了标记染色体或其他复杂染色体重排的识别准确性。然而,由于SKY或M-FISH相关的额外成本和时间,以及许多中心此类成像设备的可用性有限,对每个样本常规进行这些检测并不可行。此外,通过SKY或M-FISH识别异常通常需要FISH进行确认。需要一种实用的方法来利用每种方法的互补优势。在我们中心,我们采用一种算法,该算法规定对患者进行初步评估时先使用常规G显带,若G显带分析检测到标记染色体或复杂易位,则随后进行SKY特征分析。根据该算法,一旦通过SKY确定了异常染色体的来源,就使用FISH来验证结果。为了证明该算法的有效性,我们结合使用G显带、SKY和FISH对羊水细胞和淋巴细胞玻片进行了分析。我们的结果证实,选择性使用SKY或M-FISH的算法将为产前和产后染色体分析提供一种高效且改进的方法。