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Functional Pathway Analysis Using SCNP of FLT3 Receptor Pathway Deregulation in AML Provides Prognostic Information Independent from Mutational Status

机译:使用AML中FLT3受体通路调控的SCNP的功能通路分析提供了独立于突变状态的预后信息。

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摘要

FMS-like tyrosine kinase 3 receptor (FLT3) internal tandem duplication (ITD) mutations result in constitutive activation of this receptor and have been shown to increase the risk of relapse in patients with acute myeloid leukemia (AML); however, substantial heterogeneity in clinical outcomes still exists within both the ITD mutated and unmutated AML subgroups, suggesting alternative mechanisms of disease relapse not accounted by FLT3 mutational status. Single cell network profiling (SCNP) is a multiparametric flow cytometry based assay that simultaneously measures, in a quantitative fashion and at the single cell level, both extracellular surface marker levels and changes in intracellular signaling proteins in response to extracellular modulators. We previously reported an initial characterization of FLT3 ITD-mediated signaling using SCNP. Herein SCNP was applied sequentially to two separate cohorts of samples collected from elderly AML patients at diagnosis. In the first (training) study, AML samples carrying unmutated, wild-type FLT3 (FLT3 WT) displayed a wide range of induced signaling, with a fraction having signaling profiles comparable to FLT3 ITD AML samples. Conversely, the FLT3 ITD AML samples displayed more homogeneous induced signaling, with the exception of patients with low (<40%) mutational load, which had profiles comparable to FLT3 WT AML samples. This observation was then confirmed in an independent (verification) cohort. Data from the second cohort were also used to assess the association between SCNP data and disease-free survival (DFS) in the context of FLT3 and nucleophosmin (NPM1) mutational status among patients who achieved complete remission (CR) to induction chemotherapy. The combination of SCNP read outs together with FLT3 and NPM1 molecular status improved the DFS prediction accuracy of the latter. Taken together, these results emphasize the value of comprehensive functional assessment of biologically relevant signaling pathways in AML as a basis for the development of highly predictive tests for guidance of post-remission therapy.
机译:FMS样酪氨酸激酶3受体(FLT3)内部串联重复(ITD)突变导致该受体的组成性激活,并已显示会增加急性髓细胞性白血病(AML)患者复发的风险;然而,ITD突变和未突变的AML亚组在临床结局上仍然存在很大的异质性,这表明FLT3突变状态不能解释疾病复发的其他​​机制。单细胞网络分析(SCNP)是一种基于多参数流式细胞仪的测定方法,可同时以定量方式在单细胞水平上测量细胞外表面标志物水平和响应细胞外调节剂的细胞内信号蛋白的变化。我们先前报道了使用SCNP进行FLT3 ITD介导的信号转导的初步表征。本文将SCNP依次应用于在诊断时从老年AML患者中收集的两个独立样本组。在第一个(培训)研究中,携带未突变的野生型FLT3(FLT3 WT)的AML样品显示出广泛的诱导信号传导,其中一部分具有与FLT3 ITD AML样品相当的信号传导特征。相反,FLT3 ITD AML样本显示出更均一的诱导信号传导,但突变负荷低(<40%)的患者除外,其突变谱可与FLT3 WT AML样本相媲美。然后在一个独立的(验证)队列中证实了这一观察结果。第二组的数据还用于评估在完全缓解(CR)诱导化疗的患者中,FLT3和核磷蛋白(NPM1)突变状态下SCNP数据与无病生存(DFS)之间的关联。 SCNP读数与FLT3和NPM1分子状态的组合提高了后者的DFS预测准确性。综上所述,这些结果强调了对AML中生物学相关信号通路进行全面功能评估的价值,以此作为开发高度预测性测试以指导缓解后治疗的基础。

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