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Monitoring of gefitinib sensitivity with radioiodinated PHY based on EGFR expression
Mitsuyoshi Yoshimoto1, Masahiko Hirata, Yasukazu Kanai
1Division of Functional Imaging, National Cancer Center Hospital East.
Abstract:
Epidermal growth factor receptor (EGFR) is attractive target for tumor diagnosis and therapy, as it is specifically and abundantly expressed in tumor cells. EGFR-tyrosine kinase (TK) inhibitors such as gefitinib and erlotinib are widely used in the treatment of non-small cell lung cancer (NSCLC). In this study, we investigated whether radioiodinated 4-(3-iodo-phenoxy)-6,7-diethoxy-quinazoline (PHY), which is a candidate EGFR-TK imaging agent for single photon emission computed tomography (SPECT) is able to predict gefitinib sensitivity. We used four NSCLC cell lines-A549 (wild-type EGFR), H1650 (mutant EGFR; del E746_A750), H1975 (mutant EGFR; L858R, T790M) and H3255 (mutant EGFR; L858R)-and one epidermoid carcinoma cell line, A431 (wild-type EGFR). Cell proliferation assay and Western blotting revealed that A431 and H3255 with high EGFR expression showed high sensitivity to gefitinib. On the other hand, A549, H1650 and H1975 showed much lower sensitivity to gefitinib. The blocking study revealed that gefitinib decreased tumor uptake in (125)I-PHY in A431-bearing mice. Moreover, in vivo tumor uptake of (125)I-PHY was correlated with the IC50 of gefitinib for cell proliferation. In the present study, tumor uptake of (125)I-PHY was correlated with the gefitinib sensitivity and this uptake was based on expression levels of EGFR, but not on mutation status. Although the mutation status is the most important factor for predicting gefitinib sensitivity, the abundant expression of EGFR is essential for therapy with EGFR-TK inhibitors. Therefore, radioiodinated PHY is a potential imaging agent to predict gefitinib sensitivity based on EGFR expression levels though further modifications of the imaging agent is needed to accurately estimate the mutation status.
Insights
Radioiodinated 4-(3-iodo-phenoxy)-6,7-diethoxy-quinazoline (PHY) can predict gefitinib sensitivity in non-small cell lung cancer (NSCLC) by measuring epidermal growth factor receptor (EGFR) expression levels. This imaging agent shows potential for guiding EGFR-tyrosine kinase inhibitor therapy.
Area of Science:
- Oncology
- Radiochemistry
- Molecular Imaging
Background:
- Epidermal growth factor receptor (EGFR) is a key target in cancer therapy, particularly for non-small cell lung cancer (NSCLC).
- EGFR-tyrosine kinase (TK) inhibitors like gefitinib are standard treatments, but predicting patient response remains a challenge.
- Accurate prediction of gefitinib sensitivity is crucial for effective NSCLC treatment.
Purpose of the Study:
- To evaluate radioiodinated 4-(3-iodo-phenoxy)-6,7-diethoxy-quinazoline (PHY) as an imaging agent for predicting gefitinib sensitivity in NSCLC.
- To determine if PHY uptake correlates with EGFR expression levels and gefitinib response.
- To assess the potential of PHY for guiding EGFR-TK inhibitor therapy.
Main Methods:
- Utilized five NSCLC and epidermoid carcinoma cell lines with varying EGFR expression and mutation statuses.
- Performed cell proliferation assays and Western blotting to assess gefitinib sensitivity.
- Investigated in vivo tumor uptake of (125)I-PHY in mice and its correlation with gefitinib sensitivity and EGFR expression.
Main Results:
- Gefitinib sensitivity was high in cell lines with high EGFR expression (A431, H3255).
- Tumor uptake of (125)I-PHY in mice was decreased by gefitinib treatment.
- (125)I-PHY uptake correlated with gefitinib sensitivity and was dependent on EGFR expression levels, not mutation status.
Conclusions:
- Radioiodinated PHY is a potential imaging agent for predicting gefitinib sensitivity based on EGFR expression levels in NSCLC.
- While EGFR mutation status is critical, abundant EGFR expression is essential for EGFR-TK inhibitor efficacy.
- Further modifications of PHY may be needed to accurately estimate EGFR mutation status for improved therapeutic guidance.
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