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HER3-Mediated Resistance to Hsp90 Inhibition Detected in Breast Cancer Xenografts by Affibody-Based PET Imaging
Carlos D Martins1, Chiara Da Pieve1, Thomas A Burley1
1Division of Radiotherapy and Imaging, The Institute of Cancer Research, London, United Kingdom.
Abstract:
Purpose: Recent studies have highlighted a role of HER3 in HER2-driven cancers (e.g., breast cancer), implicating the upregulation of the receptor in resistance to HER-targeted therapies and Hsp90 inhibitors (e.g., AUY922). Therefore, we have developed an affibody-based PET radioconjugate that quantitatively assesses HER3 changes induced by Hsp90 inhibition in vivoExperimental Design: ZHER3:8698 affibody molecules were conjugated via the C-terminus cysteine to DFO-maleimide for 89Zr radiolabeling. The probe was characterized in vitro and in vivo in a panel of human breast cell lines and xenograft models with varying HER3 receptor levels. In addition, the radioconjugate was investigated as a tool to monitor the outcome of AUY922, an Hsp90 inhibitor, in an MCF-7 xenograft model.Results: We demonstrated that 89Zr-DFO-ZHER3:8698 can track changes in receptor expression in HER3-positive xenograft models and monitor the outcome of AUY922 treatment. Our in vitro findings showed that MCF-7 cells, which are phenotypically different from BT474, develop resistance to treatment with AUY922 through HER3/IGF-1Rβ-mediated signaling. Of note, the lack of response in vitro due to HER3 recovery was confirmed in vivo using 89Zr-DFO-ZHER3:8698-based imaging. Upon AUY922 treatment, higher radioconjugate uptake was detected in treated MCF-7 xenografts, correlating with an AUY922-induced HER3 upregulation concomitant with an increase in IGF-1Rβ expression.Conclusions: These data underline the potential of HER3-based PET imaging to noninvasively provide information about HER3 expression and to identify patients not responding to targeted therapies due to HER3 recovery. Clin Cancer Res; 24(8); 1853-65. ©2018 AACR.
Insights
This study developed a novel PET radioconjugate to track HER3 receptor changes in breast cancer. The imaging tool monitors treatment response to Hsp90 inhibitors and identifies resistance mechanisms.
Area of Science:
- Oncology
- Molecular Imaging
- Pharmacology
Background:
- HER3 receptor plays a role in HER2-driven cancers and resistance to targeted therapies.
- Upregulation of HER3 is implicated in resistance to HER-targeted therapies and Hsp90 inhibitors.
- Quantitative assessment of HER3 is crucial for understanding treatment response.
Purpose of the Study:
- To develop an affibody-based PET radioconjugate for quantitative assessment of HER3 changes in vivo.
- To evaluate the radioconjugate's ability to monitor HER3 expression changes induced by Hsp90 inhibition.
- To investigate the role of HER3 in mediating resistance to Hsp90 inhibitors.
Main Methods:
- Development and characterization of a 89Zr-labeled affibody-based PET radioconjugate (89Zr-DFO-ZHER3:8698).
- In vitro and in vivo evaluation in human breast cancer cell lines and xenograft models.
- Monitoring of AUY922 (Hsp90 inhibitor) treatment outcome in an MCF-7 xenograft model using PET imaging.
Main Results:
- 89Zr-DFO-ZHER3:8698 successfully tracked HER3 receptor expression changes in HER3-positive xenografts.
- The radioconjugate monitored the treatment outcome of AUY922.
- MCF-7 cells developed resistance to AUY922 via HER3/IGF-1Rβ signaling, confirmed by in vivo imaging showing increased HER3 and IGF-1Rβ expression upon treatment.
Conclusions:
- HER3-based PET imaging has potential for noninvasive assessment of HER3 expression.
- This imaging approach can identify patients resistant to targeted therapies due to HER3 recovery.
- The developed radioconjugate is a valuable tool for monitoring Hsp90 inhibitor treatment and resistance mechanisms.
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