Rajat Thawani, Matteo Repetto, Clare Keddy, Katelyn Nicholson, Kristen Jones, Kevin Nusser, Catherine Z. Beach, Guilherme Harada, Alexander Drilon, Monika A. Davare
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Using Ba/F3 and NIH3T3 cell models, CRISPR/Cas9-edited isogenic wildtype and mutant patient-derived cell lines, and in vivo tumor growth studies, we compared type I TKIs (crizotinib, entrectinib, taletrectinib, lorlatinib, and repotrectinib) to type II TKIs (cabozantinib and merestinib) and the type I FLT3 inhibitor gilteritinib. The ROS1 L2086F mutant kinase showed resistance to type I TKIs, while type II TKIs retained activity. Gilteritinib inhibited both wildtype and L2086F mutant ROS1 but was ineffective against the G2032R mutation. Structural analyses revealed distinct binding poses for cabozantinib and gilteritinib, explaining their efficacy against L2086F. Clinical cases demonstrated cabozantinib’s effectiveness in patients with TKI-resistant, ROS1 L2086F mutant NSCLCs. This study provides the first comprehensive report of ROS1 L2086F in the context of later-generation TKIs, including macrocyclic inhibitors. 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引用次数: 0
摘要
这篇摘要的语法基本正确,但有一部分的句子结构存在小问题。以下是稍作修改的版本,语法和语流都有所改进:ROS1酪氨酸激酶抑制剂(TKIs)对ROS1阳性非小细胞肺癌非常有效,但耐药性仍然是一个挑战。我们研究了各种TKIs对野生型和突变型ROS1的活性,重点是新出现的L2086F耐药突变。利用 Ba/F3 和 NIH3T3 细胞模型、CRISPR/Cas9 编辑的同源野生型和突变型患者衍生细胞系以及体内肿瘤生长研究,我们比较了 I 型 TKIs(crizotinib、entrectinib、taletrectinib、lorlatinib 和 repotrectinib)和 II 型 TKIs(cabozantinib 和 merestinib)以及 I 型 FLT3 抑制剂吉特替尼。ROS1 L2086F突变激酶对I型TKIs表现出耐药性,而II型TKIs则保持活性。吉特替尼对野生型和L2086F突变型ROS1均有抑制作用,但对G2032R突变无效。结构分析表明,卡博替尼和吉特替尼的结合位置不同,这也是它们对L2086F有效的原因。临床病例显示,卡博替尼对TKI耐药的ROS1 L2086F突变NSCLC患者有效。本研究首次全面报告了ROS1 L2086F在包括大环抑制剂在内的新一代TKIs中的情况。虽然卡博替尼能有效抑制ROS1 L2086F,但其多激酶抑制剂的特性突出表明,需要选择性更强、耐受性更好的TKIs来克服激酶内在耐药性。吉尔替尼可能为靶向ROS1 L2086F提供了一种具有明显脱靶毒性的替代方案,但要全面评估其在这种情况下的潜力,还需要进一步的研究。
TKI type switching overcomes ROS1 L2086F in ROS1 fusion-positive cancers
The grammar in this abstract is generally correct, but there’s a minor issue with sentence structure in one part. Here’s a slightly revised version with improved grammar and flow: ROS1 tyrosine kinase inhibitors (TKIs) are highly effective in ROS1-positive non-small cell lung cancer, but resistance remains a challenge. We investigated the activity of various TKIs against wildtype and mutant ROS1, focusing on the emerging L2086F resistance mutation. Using Ba/F3 and NIH3T3 cell models, CRISPR/Cas9-edited isogenic wildtype and mutant patient-derived cell lines, and in vivo tumor growth studies, we compared type I TKIs (crizotinib, entrectinib, taletrectinib, lorlatinib, and repotrectinib) to type II TKIs (cabozantinib and merestinib) and the type I FLT3 inhibitor gilteritinib. The ROS1 L2086F mutant kinase showed resistance to type I TKIs, while type II TKIs retained activity. Gilteritinib inhibited both wildtype and L2086F mutant ROS1 but was ineffective against the G2032R mutation. Structural analyses revealed distinct binding poses for cabozantinib and gilteritinib, explaining their efficacy against L2086F. Clinical cases demonstrated cabozantinib’s effectiveness in patients with TKI-resistant, ROS1 L2086F mutant NSCLCs. This study provides the first comprehensive report of ROS1 L2086F in the context of later-generation TKIs, including macrocyclic inhibitors. While cabozantinib effectively inhibits ROS1 L2086F, its multi-kinase inhibitor nature highlights the need for more selective and better-tolerated TKIs to overcome kinase-intrinsic resistance. Gilteritinib may offer an alternative for targeting ROS1 L2086F with distinct off-target toxicities, but further studies are required to fully evaluate its potential in this setting.
期刊介绍:
Online-only and open access, npj Precision Oncology is an international, peer-reviewed journal dedicated to showcasing cutting-edge scientific research in all facets of precision oncology, spanning from fundamental science to translational applications and clinical medicine.