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用于检测白血病患者中BCR-ABL融合蛋白的流式细胞免疫微珠分析。

Flow cytometric immunobead assay for the detection of BCR-ABL fusion proteins in leukemia patients.

作者信息

Weerkamp F, Dekking E, Ng Y Y, van der Velden V H J, Wai H, Böttcher S, Brüggemann M, van der Sluijs A J, Koning A, Boeckx N, Van Poecke N, Lucio P, Mendonça A, Sedek L, Szczepański T, Kalina T, Kovac M, Hoogeveen P G, Flores-Montero J, Orfao A, Macintyre E, Lhermitte L, Chen R, Brouwer-De Cock K A J, van der Linden A, Noordijk A L, Comans-Bitter W M, Staal F J T, van Dongen J J M

机构信息

Department of Immunology, Erasmus MC, Rotterdam, The Netherlands.

出版信息

Leukemia. 2009 Jun;23(6):1106-17. doi: 10.1038/leu.2009.93. Epub 2009 Apr 23.

Abstract

BCR-ABL fusion proteins show increased signaling through their ABL tyrosine kinase domain, which can be blocked by specific inhibitors, thereby providing effective treatment. This makes detection of BCR-ABL aberrations of utmost importance for diagnosis, classification and treatment of leukemia patients. BCR-ABL aberrations are currently detected by karyotyping, fluorescence in situ hybridization (FISH) or PCR techniques, which are time consuming and require specialized facilities. We developed a simple flow cytometric immunobead assay for detection of BCR-ABL fusion proteins in cell lysates, using a bead-bound anti-BCR catching antibody and a fluorochrome-conjugated anti-ABL detection antibody. We noticed protein stability problems in lysates caused by proteases from mature myeloid cells. This problem could largely be solved by adding protease inhibitors in several steps of the immunobead assay. Testing of 145 patient samples showed fully concordant results between the BCR-ABL immunobead assay and reverse transcriptase PCR of fusion gene transcripts. Dilution experiments with BCR-ABL positive cell lines revealed sensitivities of at least 1%. We conclude that the BCR-ABL immunobead assay detects all types of BCR-ABL proteins in leukemic cells with high specificity and sensitivity. The assay does not need specialized laboratory facilities other than a flow cytometer, provides results within approximately 4 h, and can be run in parallel to routine immunophenotyping.

摘要

BCR-ABL融合蛋白通过其ABL酪氨酸激酶结构域显示出增强的信号传导,而这种信号传导可被特异性抑制剂阻断,从而提供有效的治疗方法。这使得检测BCR-ABL异常对于白血病患者的诊断、分类和治疗至关重要。目前,BCR-ABL异常是通过核型分析、荧光原位杂交(FISH)或PCR技术来检测的,这些方法耗时且需要专门的设备。我们开发了一种简单的流式细胞术免疫微珠检测法,用于检测细胞裂解物中的BCR-ABL融合蛋白,该方法使用结合微珠的抗BCR捕获抗体和荧光染料偶联的抗ABL检测抗体。我们注意到成熟髓系细胞中的蛋白酶会导致裂解物中的蛋白质稳定性问题。在免疫微珠检测的几个步骤中添加蛋白酶抑制剂,很大程度上可以解决这个问题。对145份患者样本的检测显示,BCR-ABL免疫微珠检测法与融合基因转录本的逆转录PCR结果完全一致。用BCR-ABL阳性细胞系进行的稀释实验显示灵敏度至少为1%。我们得出结论,BCR-ABL免疫微珠检测法能以高特异性和灵敏度检测白血病细胞中所有类型的BCR-ABL蛋白。该检测法除了流式细胞仪外不需要专门的实验室设备,大约4小时内就能得出结果,并且可以与常规免疫表型分析同时进行。

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