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Image Cytometry Based Detection of Aneuploidy by Fluorescence In situ Hybridization in Suspension

机译:非整倍体的细胞图像分析基于视觉的检测荧光原位杂交技术在暂停

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摘要

Cytogenetic abnormalities are important diagnostic and prognostic criteria for hematologic malignancies. Karyotyping and Fluorescent In Situ Hybridization, (FISH), are the conventional methods by which these abnormalities are detected. The sensitivity of these microscopy-based methods is limited by the abundance of the abnormal cells in the samples and therefore these analyses are commonly not applicable to minimal residual disease stages. A flow cytometry-based imaging approach was developed to detect chromosomal abnormalities following FISH in suspension (FISH-IS) which enables the automated analysis of several log-magnitude higher number of cells compared to the microscopy-based approaches. The present study demonstrates the applicability of FISH-IS for detecting numerical chromosome aberrations, establishes accuracy and sensitivity of detection compared to conventional FISH, and feasibility to study procured clinical samples of acute myeloid leukemia (AML). Male and female healthy donor peripheral blood mononuclear cells hybridized with combinations of chromosome enumeration probes (CEP) 8, X and Y served as models for disomy, monosomy, and trisomy. The sensitivity of detection of monosomies and trisomies amongst 20,000 analyzed cells was determined to be 1% with a high level of precision. A high correlation (R2=0.99) with conventional FISH analysis was found based on the parallel analysis of diagnostic samples procured from 10 AML patients with trisomy 8 (+8). Additionally, FISH-IS analysis of samples procured at the time of clinical remission demonstrated the presence of residual (+8) cells indicating that this approach may be used to detect minimal residual disease and associated chromosomal defects.
机译:细胞遗传学异常是血液系统恶性肿瘤的重要诊断和预后标准。核型分析和荧光原位杂交(FISH)是检测这些异常的常规方法。这些基于显微镜的方法的敏感性受到样本中异常细胞数量的限制,因此,这些分析通常不适用于最少的残留疾病阶段。开发了基于流式细胞仪的成像方法来检测悬浮FISH后的染色体异常(FISH-IS),与基于显微镜的方法相比,该方法能够自动分析数个对数级更高数量的细胞。本研究证明了FISH-IS在检测数字染色体畸变方面的适用性,与常规FISH相比,建立了检测的准确性和敏感性,并且在研究急性髓性白血病(AML)的临床样品中具有可行性。雄性和雌性健康供体外周血单核细胞与染色体枚举探针(CEP)8,X和Y的杂交,可作为二体,单体和三体模型。在20,000个分析的细胞中检测单体型和三体型的灵敏度被确定为1%,具有很高的精确度。通过对10例8三体性(+8)AML患者的诊断样本进行平行分析,发现与常规FISH分析具有高度相关性(R 2 = 0.99)。此外,在临床缓解时对样品进行的FISH-IS分析表明存在残留(+8)细胞,这表明该方法可用于检测最小程度的残留疾病和相关的染色体缺陷。

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