医学
耐受性
吉非替尼
肺癌
内科学
相伴的
肿瘤科
实体瘤疗效评价标准
表皮生长因子受体
T790米
癌症
酪氨酸激酶抑制剂
化疗
进行性疾病
不利影响
作者
Keunchil Park,Gee‐Chen Chang,Giuseppe Curigliano,Wan‐Teck Lim,Ross A. Soo,Miguel Ángel Molina‐Vila,Valérie Cattan,Hélène Darville,E. Gandossi,Veronika Smutná,Isabelle Sudey,Santiago Viteri
出处
期刊:Lung Cancer
[Elsevier BV]
日期:2021-03-13
卷期号:155: 127-135
被引量:13
标识
DOI:10.1016/j.lungcan.2021.03.012
摘要
Abstract
Background
MET and AXL dysregulation is reported as a bypass mechanism driving tumour progression in non-small cell lung cancer (NSCLC) with acquired resistance to epidermal growth factor receptor (EGFR) tyrosine kinase inhibitor (TKI). This non-comparative phase I study investigated the combination of gefitinib with S49076, a MET/AXL inhibitor, in advanced EGFR TKI-resistant NSCLC patients with MET and/or AXL dysregulation. Methods
Patients received S49076 at escalating doses of 500 or 600 mg with a fixed dose of 250 mg gefitinib orally once daily in continuous 28day cycles. MET and AXL dysregulation and EGFR/T790M mutation status were centrally assessed in tumour biopsies at screening. Tumour response was evaluated using Response Evaluation Criteria in Solid Tumors (RECIST). EGFR TKI resistance mechanisms were analysed by next-generation sequencing. The clonal evolution of tumours was monitored with the analysis of circulating tumour DNA. Results
Of 92 pre-screened patients, 22 met the molecular inclusion criteria and 14 were included. The recommended dose was 600 mg daily S49076. Best overall responses were 2 partial responses (1 patient with MET dysregulation only, 1 MET and AXL co-dysregulation) and 8 patients with stable disease. Other potential concomitant mechanisms of resistance to EGFR TKI were identified in more than half of the included patients. Conclusions
S49076 plus gefitinib demonstrated a good tolerability with limited anti-tumour activity. Due to the low number of eligible patients, no tendency in term of activity appeared in any specific molecular subset and the data did not allow for identification of AXL overexpression as an oncogenic driver.
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