Afatinib Overcomes Osimertinib Resistance via Egfr V804F Mutation in a Syngeneic Egfr-Mutant Lung Cancer Mouse Model

IF 4.9 2区 医学 Q1 ONCOLOGY
Cancer Science Pub Date : 2026-09-01 Epub Date: 2026-06-01 DOI:10.1111/cas.70431
Takaaki Tanaka, Masato Fujitani, Masataka Taoka, Iwao Shimomura, Sachi Okawa, Shunta Mori, Tadahiro Kuribayashi, Jun Nishimura, Tomoka Nishimura, Ayako Morita, Naofumi Hara, Kiichiro Ninomiya, Go Makimoto, Hisao Higo, Kammei Rai, Eiki Ichihara, Shuta Tomida, Katsuyuki Hotta, Yosuke Togashi, Yoshinobu Maeda, Katsuyuki Kiura, Ryohei Katayama, Kadoaki Ohashi
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引用次数: 0

Abstract

Osimertinib is the standard first-line treatment for advanced EGFR-mutant non-small cell lung cancer. However, acquired resistance invariably develops, and identifying novel resistance pathways is clinically important as a substantial portion remains undefined. We used an immunocompetent syngeneic lung cancer mouse model harboring an Egfr exon 19 deletion (mDEL tumors) to establish acquired resistance. Osimertinib-resistant tumors were generated in vivo using a drug-holiday/re-challenge protocol. The resistance mechanism was identified using Sanger sequencing, receptor tyrosine kinase arrays, and western blotting. Egfr V804F knock-in cells were generated using CRISPR/Cas9, and their sensitivity to osimertinib and afatinib was assessed in vitro and in vivo. We established two distinct osimertinib-resistant tumor lines in a syngeneic lung cancer mouse model (mDEL OsiR #1/#3). The analysis revealed an on-target secondary Egfr V804F mutation (corresponding to human EGFR V802F) in both tumor lines. Importantly, Egfr V804F knock-in cells demonstrated significant osimertinib resistance, with a 5.7–10.5-fold increase in in vitro IC50 (mean, 8.2-fold), but remained highly sensitive to afatinib. Furthermore, afatinib effectively overcame osimertinib resistance in the V804F knock-in cell-derived mouse model. Consistently, afatinib treatment resulted in marked tumor shrinkage and suppression of EGFR signaling in the established mDEL OsiR #1/#3 in vivo. These findings establish secondary Egfr V804F/EGFR V802F as an on-target osimertinib resistance mechanism, providing a preclinical rationale for evaluating afatinib in biomarker-selected patients harboring this alteration.

在同基因Egfr突变肺癌小鼠模型中,通过Egfr V804F突变,阿法替尼克服了奥西替尼耐药性。
奥西替尼是晚期egfr突变非小细胞肺癌的标准一线治疗药物。然而,获得性耐药不可避免地会发展,鉴别新的耐药途径在临床上很重要,因为很大一部分仍未确定。我们使用含有Egfr外显子19缺失的免疫活性同基因肺癌小鼠模型(模型肿瘤)来建立获得性耐药。奥西替尼耐药肿瘤在体内使用药物假期/再挑战方案产生。利用Sanger测序、受体酪氨酸激酶阵列和western blotting鉴定耐药机制。利用CRISPR/Cas9技术生成Egfr V804F敲入细胞,并在体外和体内评估其对奥西替尼和阿法替尼的敏感性。我们在同基因肺癌小鼠模型(模型OsiR #1/#3)中建立了两种不同的奥西替尼耐药肿瘤系。分析结果显示,在两种肿瘤细胞系中都存在靶向性继发性Egfr V804F突变(对应于人类Egfr V802F)。重要的是,Egfr V804F敲入细胞显示出显著的奥西替尼耐药性,体外IC50增加5.7-10.5倍(平均8.2倍),但对阿法替尼仍然高度敏感。此外,在V804F敲入细胞衍生的小鼠模型中,阿法替尼有效地克服了奥西替尼耐药性。与此一致的是,在已建立的模型OsiR #1/#3中,阿法替尼治疗导致显著的肿瘤缩小和EGFR信号的抑制。这些发现确立了继发性Egfr V804F/ Egfr V802F是一种靶向的奥西替尼耐药机制,为在生物标志物选择的具有这种改变的患者中评估阿法替尼提供了临床前依据。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Cancer Science
Cancer Science 医学-肿瘤学
自引率
3.50%
发文量
406
审稿时长
2 months
期刊介绍: Cancer Science (formerly Japanese Journal of Cancer Research) is a monthly publication of the Japanese Cancer Association. First published in 1907, the Journal continues to publish original articles, editorials, and letters to the editor, describing original research in the fields of basic, translational and clinical cancer research. The Journal also accepts reports and case reports. Cancer Science aims to present highly significant and timely findings that have a significant clinical impact on oncologists or that may alter the disease concept of a tumor. The Journal will not publish case reports that describe a rare tumor or condition without new findings to be added to previous reports; combination of different tumors without new suggestive findings for oncological research; remarkable effect of already known treatments without suggestive data to explain the exceptional result. Review articles may also be published.
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