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April 1, 20260 citations

In vivo imaging models of bone and brain metastases and pleural carcinomatosis with a novel human EML4-ALK lung cancer cell line

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SNShigeki NanjoTNTakayuki NakagawaSTShinji Takeuchi

Key Points

  • The research aims to explore the molecular mechanisms of tumor progression and drug response in EML4-ALK lung cancer using animal models.
  • Established human lung adenocarcinoma cell line A925L expressing EML4-ALK gene fusion.
  • Developed A925LPE3 cells with high tumorigenicity and luciferase gene transfection.
  • Created in vivo imaging models for pleural carcinomatosis, bone, and brain metastasis.
  • Administered ALK inhibitors crizotinib and alectinib to assess their effects on tumor growth.
  • Crizotinib reduced tumor size in the pleural carcinomatosis model but failed in bone and brain models.
  • Alectinib demonstrated efficacy across all three models.
  • The in vivo models provide essential insights into EML4-ALK lung cancer and its responses to therapies.

Abstract

EML4-ALK lung cancer accounts for approximately 3-7% of non-small-cell lung cancer cases. To investigate the molecular mechanism underlying tumor progression and targeted drug sensitivity/resistance in EML4-ALK lung cancer, clinically relevant animal models are indispensable. In this study, we found that the lung adenocarcinoma cell line A925L expresses an EML4-ALK gene fusion (variant 5a, E2:A20) and is sensitive to the ALK inhibitors crizotinib and alectinib. We further established highly tumorigenic A925LPE3 cells, which also have the EML4-ALK gene fusion (variant 5a) and are sensitive to ALK inhibitors. By using A925LPE3 cells with luciferase gene transfection, we established in vivo imaging models for pleural carcinomatosis, bone metastasis, and brain metastasis, all of which are significant clinical concerns of advanced EML4-ALK lung cancer. Interestingly, crizotinib caused tumors to shrink in the pleural carcinomatosis model, but not in bone and brain metastasis models, whereas alectinib showed remarkable efficacy in all three models, indicative of the clinical efficacy of these ALK inhibitors. Our in vivo imaging models of multiple organ sites may provide useful resources to analyze further the pathogenesis of EML4-ALK lung cancer and its response and resistance to ALK inhibitors in various organ microenvironments. © 2015 The Authors.

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Cite This Study

Nanjo et al. (2015) studied this question.

synapsesocial.com/papers/69cd7a095652765b073a6e35https://doi.org/10.24517/00027483
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