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Antitumor Activity of Trastuzumab Deruxtecan in Pediatric Solid Tumors with Variable HER2 Expression
Chelsey M Burke1, Tamar Y Feinberg1, Samantha Brosius1
1Department of Pediatrics, Memorial Sloan Kettering Cancer Center, New York, New York.
Abstract:
Trastuzumab deruxtecan (T-DXd) is an ERBB2/HER2-targeting antibody-drug conjugate (ADC) with efficacy across adult cancers exhibiting variable HER2 expression. Prior studies demonstrating HER2 expression in osteosarcoma motivated a clinical trial of T-DXd in pediatric and adolescent/young adults with osteosarcoma, but the trial was terminated early because of inactivity. We evaluated the activity of T-DXd using osteosarcoma patient-derived xenograft (PDX) models and found a 22% objective response rate despite no detectable HER2 expression across PDXs tested. To further assess non-HER2-mediated activity, we evaluated the activity of T-DXd across 31 pediatric cancer cell lines and found osteosarcoma to be amongst the most resistant to T-DXd, as well as unconjugated deruxtecan, providing a potential explanation for the negative results observed in the clinical trial of T-DXd in osteosarcoma. T-DXd evaluation in PDX models representing pediatric histologies with greater intrinsic sensitivity to deruxtecan, including pediatric renal tumors and desmoplastic small round cell tumor, revealed both HER2-enhanced activity as well as substantial non-HER2-mediated activity, as evidenced by equipotent activity using an isotype-matched control ADC. Together, these results underscore translational opportunities for ADC therapeutics in tumor histologies with high sensitivity to the payload and in which enhanced tumor delivery may be mediated by antibody-targeted mechanisms as well as macromolecular characteristics of ADCs (e.g., enhanced permeability and retention effect) and tumor microenvironmental factors (e.g., proteolytic payload release). Our findings challenge the role of HER2 as a biomarker predictive of T-DXd response in pediatric cancers and support further biomarker-agnostic clinical development of T-DXd in desmoplastic small round cell tumor and pediatric renal tumors.
Insights
Trastuzumab deruxtecan (T-DXd) shows activity in pediatric cancers beyond HER2 expression. Osteosarcoma is resistant, while DSRCT and renal tumors benefit from T-DXd, suggesting biomarker-agnostic development.
Area of Science:
- Oncology
- Pharmacology
- Translational Medicine
Background:
- Trastuzumab deruxtecan (T-DXd) is a HER2-targeting antibody-drug conjugate (ADC) effective in adult cancers.
- Previous studies suggested HER2 expression in osteosarcoma (OS), leading to a clinical trial in pediatric OS patients that was terminated early.
- The efficacy of T-DXd in pediatric cancers with variable HER2 expression requires further investigation.
Purpose of the Study:
- To evaluate the activity of T-DXd in pediatric cancer models, including osteosarcoma (OS).
- To assess the role of HER2 expression in T-DXd efficacy across various pediatric tumor types.
- To explore potential non-HER2 mediated mechanisms of T-DXd activity and identify new therapeutic opportunities.
Main Methods:
- Testing T-DXd activity in osteosarcoma patient-derived xenograft (PDX) models.
- Evaluating T-DXd efficacy across 31 pediatric cancer cell lines.
- Assessing T-DXd activity in PDX models of pediatric renal tumors and desmoplastic small round cell tumor (DSRCT).
Main Results:
- T-DXd demonstrated a 22% objective response rate in OS PDX models despite undetectable HER2 expression.
- Osteosarcoma cell lines were resistant to T-DXd and unconjugated deruxtecan.
- T-DXd showed HER2-enhanced and non-HER2 mediated activity in pediatric renal tumors and DSRCT, with equipotent effects from a control ADC.
Conclusions:
- HER2 is not a reliable biomarker for T-DXd response in pediatric cancers.
- T-DXd exhibits significant non-HER2 mediated activity, particularly in tumor histologies sensitive to the payload.
- Biomarker-agnostic clinical development of T-DXd in DSRCT and pediatric renal tumors is warranted.
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