不适合移植的大 B 细胞淋巴瘤二线使用 axicabtagene ciloleucel:ALYCANTE 最终分析
Second-line axicabtagene ciloleucel in large B-cell lymphoma ineligible for transplantation: ALYCANTE final analysis.
CELL INTELLIGENCE · 肿瘤细胞治疗研究
肿瘤细胞治疗研究
英文原题:In-depth circulating tumor DNA sequencing for prognostication and monitoring in natural killer/T-cell lymphomas.
In-depth circulating tumor DNA sequencing for prognostication and monitoring in natural killer/T-cell lymphomas.
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我们的结果表明,ctDNA 分析可用于 ENKTL 患者诊断时的基因分型和肿瘤负荷评估。此外,ctDNA 动态变化提示其有潜力用于监测治疗反应,并为精准 ENKTL 治疗开发新的生物标志物。
EBV 定量和当前影像学方法用于结外 NK/T 细胞淋巴瘤(ENKTL)的诊断和疾病监测,但存在局限性。因此,我们探索了循环肿瘤 DNA(ctDNA)作为诊断生物标志物的效用。
通过对来自45例患者不同时间点纵向采集的118份血液样本进行深度测序,我们检测了每份样本的突变谱,估计了其对临床结局的影响,并将其与EBV DNA定量进行比较,评估其作为生物标志物的作用。
ctDNA浓度与治疗反应、分期和EBV DNA定量相关。ctDNA突变检出率为54.5%,其中BCOR(21%)是新诊断患者中最常见的突变基因;TP53突变(33%)在复发患者中最普遍。此外,完全缓解的患者表现出ENKTL相关体细胞突变的快速清除,而复发患者则常呈现持续存在或新出现的突变。我们在EBV阴性患者中检测到ctDNA突变(50%),并在缓解期EBV阳性患者中检测到突变清除,提示ctDNA基因分型可作为ENKTL的一种高效补充监测方法。此外,初始样本中DDX3X突变(PFS HR,8.26)预示不良结局。
Epstein-Barr virus (EBV) quantitation and current imaging modalities are used for diagnosis and disease monitoring in Extranodal NK/T cell lymphoma (ENKTL) but have limitations. Thus, we explored the utility of circulating tumor DNA (ctDNA) as a diagnostic biomarker.
Through in-depth sequencing of 118 blood samples collected longitudinally at different time points from 45 patients, we examined the mutational profile of each sample, estimated its impact on the clinical outcome, and assessed its role as a biomarker in comparison with EBV DNA quantitation.
The ctDNA concentration was correlated with treatment response, stage, and EBV DNA quantitation. The detection rate of ctDNA mutation was 54.5%, with BCOR (21%) being the most commonly mutated gene in newly diagnosed patients; TP53 mutation (33%) was the most prevalent in patients that experienced a relapse. Additionally, patients in complete remission exhibited a rapid clearance of ENKTL-related somatic mutations, while relapsed patients frequently presented with persisting or emerging mutations. We detected ctDNA mutations in EBV-negative patients (50%) and mutation clearance in EBV-positive patients in remission, suggesting ctDNA genotyping as an efficient complementary monitoring method for ENKTL. Additionally, mutated DDX3X (PFS HR, 8.26) in initial samples predicted poor outcome.
Our results suggest that ctDNA analysis can be used to genotype at diagnosis and estimate the tumor burden in patients with ENKTL. Furthermore, ctDNA dynamics indicate the potential use of testing it to monitor therapeutic responses and develop new biomarkers for precision ENKTL therapy.
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