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Published on: February 3, 2015
Differential Receptor Tyrosine Kinase PET Imaging for Therapeutic Guidance
Eric Wehrenberg-Klee1, N Selcan Turker1, Pedram Heidari1
1Department of Radiology, Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Boston, Massachusetts.
Unlabelled:
Inhibitors of the phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin (PI3K/AKT/mTOR) pathway hold promise for the treatment of breast cancer, but resistance to these treatments can arise via feedback loops that increase surface expression of the receptor tyrosine kinases (RTK) epidermal growth factor receptor 1 (EGFR) and human epidermal growth factor receptor 3 (HER3), leading to persistent growth pathway signaling. We developed PET probes that provide a method of imaging this response in vivo, determining which tumors may use this escape pathway while avoiding the need for repeated biopsies.
Methods:
Anti-EGFR-F(ab')2 and anti-HER3-F(ab')2 were generated from monoclonal antibodies by enzymatic digestion, conjugated to DOTA, and labeled with (64)Cu. A panel of breast cancer cell lines was treated with increasing concentrations of the AKT inhibitor GDC-0068 or the PI3K inhibitor GDC-0941. Pre- and posttreatment expression of EGFR and HER3 was compared using Western blot and correlated to probe accumulation with binding studies. Nude mice xenografts of HCC-70 or MDA-MB-468 were treated with either AKT inhibitor or PI3K inhibitor and imaged with either EGFR or HER3 PET probe.
Results:
Changes in HER3 and EGFR PET probe accumulation correlate to RTK expression change as assessed by Western blot (R(2) of 0.85-0.98). EGFR PET probe PET/CT imaging of HCC70 tumors shows an SUV of 0.32 ± 0.03 for vehicle-, 0.50 ± 0.01 for GDC-0941-, and 0.62 ± 0.01 for GDC-0068-treated tumors, respectively (P < 0.01 for both comparisons to vehicle). HER3 PET probe PET/CT imaging of MDAMB468 tumors shows an SUV of 0.35 ± 0.02 for vehicle- and 0.73 ± 0.05 for GDC-0068-treated tumors (P < 0.01).
Conclusion:
Our imaging studies, using PET probes specific to EGFR and HER3, show that changes in RTK expression indicative of resistance to PI3K and AKT inhibitors can be seen within days of therapy initiation and are of sufficient magnitude as to allow reliable clinical interpretation. Noninvasive PET monitoring of these RTK feedback loops should help to rapidly assess resistance to PI3K and AKT inhibitors and guide selection of an appropriate combinatorial therapeutic regimen on an individual patient basis.
Insights
New PET probes can image resistance to breast cancer drugs by detecting changes in epidermal growth factor receptor 1 (EGFR) and human epidermal growth factor receptor 3 (HER3) expression, avoiding biopsies.
Area of Science:
- Oncology
- Molecular Imaging
- Pharmacodynamics
Background:
- Phosphatidylinositol 3-kinase/protein kinase B/mammalian target of rapamycin (PI3K/AKT/mTOR) pathway inhibitors are promising for breast cancer treatment.
- Resistance can emerge due to feedback loops increasing receptor tyrosine kinase (RTK) expression, specifically epidermal growth factor receptor 1 (EGFR) and human epidermal growth factor receptor 3 (HER3).
- This persistent signaling necessitates methods to monitor treatment response and resistance.
Purpose of the Study:
- To develop and validate positron emission tomography (PET) probes for in vivo imaging of RTK feedback loops in breast cancer.
- To assess the potential of these probes to predict and monitor resistance to PI3K and AKT inhibitors.
- To provide a noninvasive method for guiding therapeutic strategies in individual patients.
Main Methods:
- Anti-EGFR and anti-HER3 antibody fragments (F(ab')2) were generated, conjugated to DOTA, and radiolabeled with Copper-64 ((64)Cu).
- Breast cancer cell lines were treated with PI3K or AKT inhibitors, and EGFR/HER3 expression was analyzed via Western blot.
- Nude mice xenografts were treated with inhibitors and imaged using the developed (64)Cu-labeled PET probes.
Main Results:
- Accumulation of PET probes in tumors strongly correlated with changes in EGFR and HER3 expression (R(2) of 0.85-0.98).
- PET/CT imaging showed significantly increased tracer uptake in tumors treated with PI3K or AKT inhibitors compared to vehicle controls.
- EGFR and HER3 PET probes demonstrated measurable changes in tracer uptake within days of initiating therapy.
Conclusions:
- Noninvasive PET imaging using specific EGFR and HER3 probes can reliably detect RTK upregulation indicative of resistance to PI3K/AKT inhibitors.
- These imaging studies show that changes in RTK expression can be observed within days of therapy initiation.
- PET monitoring offers a rapid, noninvasive approach to assess resistance and guide personalized combination therapy selection for breast cancer patients.
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