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首页> 外文期刊>Cancer genetics >Enhanced detection of chromosomal abnormalities in chronic lymphocytic leukemia by conventional cytogenetics using cpg oligonucleotide in combination with pokeweed mitogen and phorbol myristate acetate
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Enhanced detection of chromosomal abnormalities in chronic lymphocytic leukemia by conventional cytogenetics using cpg oligonucleotide in combination with pokeweed mitogen and phorbol myristate acetate

机译:通过常规细胞遗传学,使用cpg寡核苷酸与商陆有丝分裂原和豆蔻酸佛波醇的组合,通过常规细胞遗传学增强检测慢性淋巴细胞白血病的染色体异常

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Reproducible cytogenetic analysis in chronic lymphocytic leukemia (CLL) has been limited by the inability to obtain reliable metaphase cells for analysis. CpG oligonucleotide and cytokine stimulation have been shown to improve metaphase analysis of CLL cytogenetic abnormalities, but it is limited by variability in the cytokine receptor levels, stability, and biological activity of the cytokine in culture conditions and the high costs associated with these reagents. We report here use of a novel, stable CpG, GNKG168 along with pokeweed mitogen (PWM) and phorbol 12-myristate 13-acetate (PMA) for conventional cytogenetic assessment in CLL. We demonstrate that the combined use of GNKG168 + PWM/PMA increased the sensitivity of detection of chromosomal abnormalities compared to PWM/PMA (nZ207, odds ratioZ2.2, PZ0.0002) and GNKG168 (nZ219, odds ratioZ1.5, PZ0.0452). Further, a significant increase in sensitivity to detect complexity ≥3 with GNKG168 {thorn} PWM/PMA compared to GNKG168 alone (odds ratio 8.0, PZ0.0022) or PWM/PMA alone (odds ratio 9.6, PZ0.0007) was observed. The trend toward detection of higher complexity was significantly greater with GNKG168 + PWM/PMA compared to GNKG168 alone (PZ0.0412). The increased sensitivity was mainly attributed to the addition of PWM/PMA with GNKG168 because GNKG168 alone showed no difference in sensitivity for detection of complex abnormalities (PZ0.17). Comparison of fluorescence in situ hybridization (FISH) results with karyotypic results showed a high degree of consistency, although some complex karyotypes were present in cases with no adverse FISH abnormality. These studies provide evidence for potential use of GNKG168 in combination with PWM and PMA in karyotypic analysis of CLL patient samples to better identify chromosomal abnormalities for risk stratification.
机译:由于无法获得可靠的中期细胞进行分析,慢性淋巴细胞性白血病(CLL)中可重复的细胞遗传学分析受到了限制。 CpG寡核苷酸和细胞因子刺激已显示可改善CLL细胞遗传异常的中期分析,但受细胞因子受体水平,细胞因子在培养条件下的稳定性和生物学活性的可变性以及与这些试剂相关的高昂费用所限制。我们在这里报告了一种新颖,稳定的CpG,GNKG168以及商陆有丝分裂原(PWM)和佛波醇12-肉豆蔻酸酯13-乙酸酯(PMA)的用途,用于CLL中的常规细胞遗传学评估。我们证明,与PWM / PMA(nZ207,优势比Z2.2,PZ0.0002)和GNKG168(nZ219,优势比Z1.5,PZ0.0452)相比,GNKG168 + PWM / PMA的组合使用提高了检测染色体异常的敏感性)。此外,与单独使用GNKG168(奇数比8.0,PZ0.0022)或单独使用PWM / PMA(奇数比9.6,PZ0.0007)相比,使用GNKG168 {刺} PWM / PMA检测复杂度≥3的灵敏度显着提高。与单独使用GNKG168(PZ0.0412)相比,使用GNKG168 + PWM / PMA进行更高复杂度检测的趋势明显更大。灵敏度的提高主要归因于GNKG168添加了PWM / PMA,因为单独GNKG168在检测复杂异常方面的灵敏度没有差异(PZ0.17)。荧光原位杂交(FISH)结果与核型结果的比较显示出高度的一致性,尽管在无不良FISH异常的情况下存在一些复杂的核型。这些研究为将GNKG168与PWM和PMA结合用于CLL患者样品的核型分析,以更好地鉴定染色体异常进行风险分层提供了证据。

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