Decoding the Evolutionary Response to Ensartinib in Patients With ALK-Positive NSCLC by Dynamic Circulating Tumor DNA Sequencing

医学 DNA测序 循环肿瘤DNA 内科学 解码方法 DNA 肿瘤科 癌症研究 计算生物学 遗传学 生物 算法 癌症 计算机科学
作者
Yunpeng Yang,Jie Huang,Tao Wang,Jianya Zhou,Jing Zheng,Jifeng Feng,Wu Zhuang,Jianhua Chen,Jun Zhao,Wei Zhong,Yanqiu Zhao,Yiping Zhang,Yong Song,Yi Hu,Zhuang Yu,Youling Gong,Yuan Chen,Feng Ye,Shucai Zhang,Lejie Cao
出处
期刊:Journal of Thoracic Oncology [Elsevier BV]
卷期号:16 (5): 827-839 被引量:31
标识
DOI:10.1016/j.jtho.2021.01.1615
摘要

IntroductionBy implementing dynamic circulating tumor DNA (ctDNA) analysis, we explored the impact of TP53 mutations on tumor evolution and resistance mechanisms to ensartinib in patients with ALK-positive NSCLC.MethodsIn a multicenter phase 2 trial, patients with ALK-positive NSCLC who progressed on crizotinib were treated with ensartinib. Blood samples for ctDNA analysis were collected at baseline, cycle 3 day 1, and progression disease (PD) and analyzed with a 212-gene panel.ResultsA total of 440 samples were collected from 168 patients. Baseline TP53 mutations (20.2%) significantly correlated with inferior progression-free survival (4.2 mo versus 11.7 mo, p < 0.0001). Patients with TP53 mutations had higher mutation load than those without TP53 mutations at baseline (13.79 ± 3.72 versus 4.67 ± 0.39, p < 0.001). Although there was no significant difference in mutation load between these groups at cycle 3 day 1 (5.89 ± 2.25 versus 3.72 ± 0.62, p = 0.425), patients with mutated TP53 developed more mutations at PD (7.07 ± 1.25 versus 3.20 ± 0.33, p = 0.003). Frequency and abundance of secondary ALK mutations G1269A, G1202R, and E1210K increased markedly at PD than baseline. In patients without secondary ALK mutations, we identified ALK-independent resistance mechanisms including bypass signaling activation, downstream effector protein reactivation, epithelial-mesenchymal transformation, and epigenetic dysregulation.ConclusionsOur study highlighted the advantage of ctDNA analysis for monitoring tumor evolution. TP53 mutations promoted genetic evolution and accelerated occurrence of resistance. We also unveiled ALK-dependent resistance mechanisms, mainly by G1269A, G1202R, and E1210K mutations, and ALK-independent resistance mechanisms to ensartinib.
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