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Prospective analysis of minimal bone marrow infiltration in pediatric Burkitt's lymphomas by long-distance polymerase chain reaction for t(8;14)(q24;q32)

机译:通过t(8; 14)(q24; q32)的长距离聚合酶链反应对小儿Burkitt淋巴瘤的最小骨髓浸润进行前瞻性分析

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The chromosomal translocation t(8;14)(q24;q32) represents a characteristic marker for Burkitt's lymphoma (BL). This translocation involves the MYC oncogene on chromosome 8 and the immunoglobulin heavy-chain (IgH) locus on chromosome 14. Since the translocation does not produce a fusion gene, we established a long-distance polymerase chain reaction (LD-PCR) assay that can detect the t(8;14) at the genomic level. The sensitivity of the LD-PCR was 10-4. We used the LD-PCR assay to prospectively study 78 BL patients and found a specific PCR product in 52 of them. Among the 52 positive patients, we could test both the tumor and the bone marrow (BM) at diagnosis in 33 and determined the prevalence of minimal disseminated disease (MDD) at diagnosis. In 12/33 patients, BM was positive by LD-PCR and in 10 of them we conducted a study of minimal residual disease (MRD). Eight out of 10 children showed a clearance of MRD after one cycle of chemotherapy. The only two patients who did not achieve a negative MRD status died of disease progression. The comparative analysis of sensitivity of BM aspirate, BM biopsy and LD-PCR in t(8;14)-positive patients demonstrated a superiority of the molecular method in the assessment of MDD. The LD-PCR for t(8;14) is an important tool to study minimal BM infiltration at diagnosis and to determine its response kinetics in BL.
机译:染色体易位t(8; 14)(q24; q32)代表伯基特氏淋巴瘤(BL)的特征标记。这种易位涉及第8号染色体上的MYC癌基因和第14号染色体上的免疫球蛋白重链(IgH)基因座。由于该易位不产生融合基因,因此我们建立了长距离聚合酶链反应(LD-PCR)分析在基因组水平上检测t(8; 14)。 LD-PCR的灵敏度为10-4。我们使用LD-PCR分析法对78位BL患者进行了前瞻性研究,并在其中52位患者中发现了特异性PCR产物。在52例阳性患者中,我们可以在33例诊断时同时检测肿瘤和骨髓(BM),并在诊断时确定最小传播疾病(MDD)的患病率。 LD-PCR在12/33例患者中BM阳性,其中10例进行了最小残留病(MRD)研究。每10个儿童中有8个在一个化疗周期后显示MRD清除。只有两名未达到MRD阴性的患者死于疾病进展。对t(8; 14)阳性患者进行BM抽吸,BM活检和LD-PCR敏感性的比较分析表明,分子方法在评估MDD方面具有优势。用于t(8; 14)的LD-PCR是研究诊断时最少的BM浸润并确定其在BL中的反应动力学的重要工具。

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