HER2 Antibody-Drug Conjugates Are Active against Desmoplastic Small Round Cell Tumor

Tom Zhang1,2, Christopher A Febres-Aldana2,3, Zebing Liu4

  • 1New York Medical College, Valhalla, New York.

Abstract

Insights

Desmoplastic small round cell tumor (DSRCT) expresses ERBB2/HER2, a target for new therapies. HER2 antibody-drug conjugates (ADCs) like T-DXd show promise in shrinking DSRCT tumors, offering hope for this aggressive sarcoma.

Area of Science:

  • Oncology
  • Molecular Biology
  • Pharmacology

Background:

  • Desmoplastic small round cell tumor (DSRCT) is a rare, aggressive abdominopelvic sarcoma in young males.
  • Current treatments (surgery, chemotherapy, radiation) yield poor outcomes due to a lack of actionable genomic targets.
  • EWSR1::WT1 fusion is the known driver, but no other actionable alterations have been identified.

Purpose of the Study:

  • To evaluate ERBB2/HER2 expression as a potential therapeutic target in DSRCT.
  • To assess the efficacy of HER2-targeting antibody-drug conjugates (ADCs) in DSRCT models.

Main Methods:

  • Assessed ERBB2/HER2 expression using RNA sequencing, RT-qPCR, and a novel HER2 IHC assay (clone 29D8) in clinical samples and patient-derived xenografts (PDX).
  • Evaluated responses to HER2 ADCs (trastuzumab deruxtecan [T-DXd] and trastuzumab emtansine) in DSRCT PDX, cell line, and organoid models.
  • Investigated drug internalization, apoptosis induction (Western blotting, caspase assays), and bystander effects.

Main Results:

  • ERBB2/HER2 was detectable in DSRCT samples, with enhanced sensitivity via RNA assays and clone 29D8 IHC.
  • T-DXd and trastuzumab emtansine treatment led to significant tumor regression in DSRCT models.
  • Therapeutic response involved rapid HER2 ADC internalization, p53-mediated apoptosis, and bystander effects proportional to HER2 levels.

Conclusions:

  • ERBB2/HER2 is a viable therapeutic target for DSRCT.
  • HER2 ADCs represent promising novel treatment options for this aggressive sarcoma.
  • These findings may address a critical unmet need for more effective DSRCT therapies.