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联合抑制 DDR1 和 Notch 信号传导是一种针对 KRAS 驱动的肺腺癌的治疗策略。

Combined inhibition of DDR1 and Notch signaling is a therapeutic strategy for KRAS-driven lung adenocarcinoma.

机构信息

Experimental Oncology, Molecular Oncology Programme, Centro Nacional de Investigaciones Oncológicas (CNIO), Madrid, Spain.

Bioinformatics Unit, Structural Biology and Biocomputing Programme, CNIO, Madrid, Spain.

出版信息

Nat Med. 2016 Mar;22(3):270-7. doi: 10.1038/nm.4041. Epub 2016 Feb 8.

Abstract

Patients with advanced Kirsten rat sarcoma viral oncogene homolog (KRAS)-mutant lung adenocarcinoma are currently treated with standard chemotherapy because of a lack of efficacious targeted therapies. We reasoned that the identification of mediators of Kras signaling in early mouse lung hyperplasias might bypass the difficulties that are imposed by intratumor heterogeneity in advanced tumors, and that it might unveil relevant therapeutic targets. Transcriptional profiling of Kras(G12V)-driven mouse hyperplasias revealed intertumor diversity with a subset that exhibited an aggressive transcriptional profile analogous to that of advanced human adenocarcinomas. The top-scoring gene in this profile encodes the tyrosine kinase receptor DDR1. The genetic and pharmacological inhibition of DDR1 blocked tumor initiation and tumor progression, respectively. The concomitant inhibition of both DDR1 and Notch signaling induced the regression of KRAS;TP53-mutant patient-derived lung xenografts (PDX) with a therapeutic efficacy that was at least comparable to that of standard chemotherapy. Our data indicate that the combined inhibition of DDR1 and Notch signaling could be an effective targeted therapy for patients with KRAS-mutant lung adenocarcinoma.

摘要

目前,由于缺乏有效的靶向治疗方法,患有晚期 Kirsten 大鼠肉瘤病毒癌基因同源物 (KRAS)-突变型肺腺癌的患者接受标准化疗。我们推断,鉴定早期小鼠肺增生中 Kras 信号的介质可能绕过晚期肿瘤中肿瘤内异质性带来的困难,并可能揭示相关的治疗靶点。Kras(G12V)驱动的小鼠增生的转录谱显示出肿瘤间的多样性,其中一部分表现出类似于晚期人类腺癌的侵袭性转录谱。该谱中得分最高的基因编码酪氨酸激酶受体 DDR1。DDR1 的遗传和药理学抑制分别阻断了肿瘤起始和肿瘤进展。同时抑制 DDR1 和 Notch 信号诱导 KRAS;TP53 突变的患者来源的肺异种移植 (PDX) 的消退,其治疗效果至少与标准化疗相当。我们的数据表明,DDR1 和 Notch 信号的联合抑制可能是 KRAS 突变型肺腺癌患者的有效靶向治疗方法。

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