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Microfluidic Chips for Detecting the t(4;14) Translocation and Monitoring Disease during Treatment Using Reverse Transcriptase-Polymerase Chain Reaction Analysis of IgH-MMSET Hybrid Transcripts

机译:使用IgH-MMSET杂交转录本的逆转录酶-聚合酶链反应分析检测治疗期间t(4; 14)易位并监测疾病的微流控芯片

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摘要

Diagnosis platforms incorporating low-cost microfluidic chips enable sensitive, rapid, and accurate genetic analysis that could facilitate customized therapies tailored to match the vulnerabilities of any types of cancer. Using ex vivo cancer cells, we have detected the unique molecular signature and a chromosomal translocation in multiple myeloma. Multiple myeloma is characterized by IgH rearrangements and translocations that enable unequivocal identification of malignant cells, detected here with integrated microfluidic chips incorporating genetic amplification via reverse transcriptase-polymerase chain reaction and capillary electrophoresis. On microfluidic chips, we demonstrated accurate and versatile detection of molecular signatures in individual cancer cells, with value for monitoring response to therapy, detecting residual cancer cells that mediate relapse, and evaluating prognosis. Thus, testing for two clinically important molecular biomarkers, the IgH VDJ signature and hybrid transcripts signaling the t(4;14) chro-mosomal translocation, with predictive value in diagnosis, treatment decisions, and monitoring has been efficiently implemented on a miniaturized microfluidic system.
机译:结合了低成本微流控芯片的诊断平台可以进行灵敏,快速和准确的遗传分析,从而可以促进量身定制的治疗方法,以适应任何类型的癌症的脆弱性。使用离体癌细胞,我们已经检测到多发性骨髓瘤中独特的分子标记和染色体易位。多发性骨髓瘤的特点是IgH重排和易位,可明确鉴定恶性细胞,此处可通过整合的微流控芯片(通过逆转录酶-聚合酶链反应和毛细管电泳进行基因扩增)进行检测。在微流控芯片上,我们展示了精确,通用的单个癌细胞分子标记检测方法,具有监测治疗反应,检测介导复发的残留癌细胞以及评估预后的价值。因此,已经在小型化微流控系统上有效实施了两种临床上重要的分子生物标志物的测试:IgH VDJ签名和信号转导t(4; 14)染色体-染色体易位的杂种转录物,在诊断,治疗决策和监测方面具有预测价值。

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