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首页> 外文期刊>Blood: The Journal of the American Society of Hematology >Genome-wide copy number analysis of Hodgkin Reed-Sternberg cells identifies recurrent imbalances with correlations to treatment outcome.
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Genome-wide copy number analysis of Hodgkin Reed-Sternberg cells identifies recurrent imbalances with correlations to treatment outcome.

机译:Hodgkin Reed-Sternberg细胞的基因组拷贝数分析识别与治疗结果相关的复发性失衡。

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In classical Hodgkin lymphoma (cHL) the mechanisms underlying primary refractory disease and relapse remain unknown. To gain further insight into cHL pathogenesis and genomic changes linked to treatment response, we studied 53 cHL patients by array comparative genomic hybridization, including 23 patients whose primary treatment failed, using DNA from microdissected HRS cells. Copy number alterations found in more than 20% of cases included gains of 2p, 9p, 16p, 17q, 19q, 20q, and losses of 6q, 11q, and 13q. We identified at high resolution recurrent changes defining minimally gained and lost regions harboring genes involved in nuclear factor kappaB signaling, such as REL, IKBKB, CD40, and MAP3K14. Gains of chromosome 16p11.2-13.3 were significantly more frequent in pretreatment and relapse biopsies of unresponsive patients and were associated with shortened disease-specific survival (P = .028). In the therapy-resistant HL cell line KMH2, we found genomic gains and overexpression of the multidrug resistance gene ABCC1 mapping to cytoband 16p13.11. We show that doxorubicin exposure to KMH2 induces ABCC1 expression and that siRNA silencing of ABCC1 sensitizes KMH2 cells to doxorubicin toxicity in vitro, suggesting that overexpression of ABCC1 contributes to the drug resistance phenotype found in KMH2.
机译:在典型的霍奇金淋巴瘤(CHL)初级耐火性疾病和复发的机制仍然未知。为了进一步了解CHL发病机制和与治疗响应相关的基因组变化,通过阵列对比基因组杂交研究了53名CHL患者,其中包括来自微小散发HRS细胞的DNA的初级处理失效的23例患者。超过20%的案件中发现的副本编号改建包括2P,9P,16P,17Q,19Q,20Q和6Q,11Q和13Q的损失。我们在高分辨率复发变化下识别,定义核对核因子Kappab信号传导中涉及的基因的最小获得和丢失的区域,例如Rel,Ikbkb,CD40和MAP3K14。染色体16p11.2-13.3在无反应患者的预处理和复发活检中显着更频繁地频繁更频繁,并且与缩短的疾病特异性存活相关(p = .028)。在治疗抗性HL细胞系KMH2中,我们发现多药抗性基因ABCC1测绘的基因组增益和过表达到细胞虫16P13.11。我们表明,DOXORUBICIN暴露于KMH2诱导ABCC1表达,并且ABCC1的siRNA沉默在体外致敏泛霉素毒性,表明ABCC1的过度表达有助于KMH2中发现的耐药表型。

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