PubMed · 2003 · 239 citations · 23 references
Disease SeverityMedicineImmunologyCancer Cell BiologyPathologyPredictive ValueLung Cancer RecurrenceCancer BiologyBronchial NeoplasmEpha2 Receptor KinaseCancer GenomicsOncologyRadiation OncologyTumor MicroenvironmentLung CancerTumor BiologyCancer Growth
Underestimation of disease severity is a major problem confronting the successful clinical management of non-small cell lung cancer. Recent advances in molecular biological substaging may provide an opportunity to identify those patients with the most aggressive forms of the disease, but there is a continuing need for accurate markers of disease relapse and survival.In our present study, immunohistochemical analyses of a retrospective database of pathologic specimens were used to demonstrate that the EphA2 receptor kinase is frequently overexpressed in NSCLC.Initial presentation with high levels of EphA2 predicts subsequent survival, overall relapse, and site of relapse. Specifically, high levels of EphA2 in the primary tumor predict brain metastases, whereas low levels of EphA2 relate to disease-free survival or contralateral lung metastasis.These data suggest that EphA2 may provide a molecular marker to identify and predict patients who have isolated brain metastases. Moreover, the high levels of EphA2 in lung cancer may provide an opportunity for therapeutic targeting.
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Sarah Landis, Thomas S. Murray, S. Bolden et al. · CA A Cancer Journal for Clinicians · 1999 · 3.1K citations · Full text
EphA2 overexpression causes tumorigenesis of mammary epithelial cells.
Daniel P. Zelinski, Nicole D. Zantek, Jane C. Stewart et al. · PubMed · 2001 · 463 citations
Breast Oncology, Endocrine-related Cancer, Cell Signaling +15
Overexpression of the EphA2 tyrosine kinase in prostate cancer
Jennifer Walker‐Daniels, Karen Coffman, M. Azimi et al. · The Prostate · 1999 · 269 citations
E-cadherin regulates the function of the EphA2 receptor tyrosine kinase.
Nicole D. Zantek, M. Azimi, Mary Fedor‐Chaiken et al. · PubMed · 1999 · 252 citations