Survival and prognostic factors of patients with Ewing sarcoma at first recurrence following modern era multimodal therapy: A report from the Children’s Oncology Group (COG).

S Sarah Cohen-Gogo (The Hospital for Sick Children, Toronto, ON, Canada) A Allen Buxton (Children's Oncology Group, Arcadia, CA) N Natalie DelRocco (Children's Oncology Group, Monrovia, CA) M Mark D. Krailo (Children's Oncology Group, Monrovia, CA) R Richard B. Womer (Children's Hospital of Philadelphia, Philadelphia, PA) L Leo Mascarenhas (Cedar-Sinai Health Sciences University, Los Angeles, CA) P Patrick Leavey J Julia Lynne Glade Bender (Memorial Sloan Kettering Cancer Center, New York, NY) O Odion Binitie S Safia K. Ahmed (Mayo Clinic Arizona, Phoenix, AZ) D Damon R. Reed K Katherine A. Janeway (Dana-Farber/Boston Children's Cancer and Blood Disorders Center, Boston, MA) S Steven G. DuBois

Abstract

10035 Background: Ewing sarcoma (EwS) is a rare malignancy of children, adolescents and young adults for which outcomes have progressively improved through intensification of conventional chemotherapy, including interval compression of cycles. Prior cooperative group reports of relapsed EwS included patients treated less intensively and with fewer treatment options at relapse. Here, we report overall survival (OS) and prognostic factors post-first recurrence in patients with EwS treated with frontline interval-compressed chemotherapy. Methods: We included patients treated on the last three phase 3 COG EwS studies treated with interval compressed chemotherapy, which accrued from 2001-2019. Patients with initially localized disease (L-EwS) were treated on AEWS0031 arm B and AEWS1031. Patients with initially metastatic disease (M-EwS) were treated on AEWS1221. The primary outcome was OS from first relapse. Demographic and clinical data from original diagnosis and from relapse were analyzed as potential prognostic factors. Kaplan-Meier survival curves were constructed and groups compared with log-rank tests. Results: 366 patients experienced disease recurrence as first event and were included in this analysis (AEWS0031 arm B, n = 69, AEWS1031, n = 115, for a total of 184 with L-EwS; AEWS1221, n = 182, all with M-EwS). Median age at relapse was 16 years. Median time from initial enrollment to first relapse was 1.52 years and was shorter for patients with M-EwS (Kruskall-Wallis, p < 0.001). First relapses were isolated local, isolated distant, and combined in 24%, 70%, and 6.4% of patients, respectively. Metastatic stage at initial diagnosis was associated with increased risk of post-first recurrence OS event (p < 0.0001). Two-year OS post-first recurrence (OS 2y ) was 25.6% for patients with M-EwS and 48.5% for patients with L-EwS. Time to first recurrence was also a predictor of post-recurrence survival (p < 0.0001): patients with initial L-EwS and relapse < 2 years from diagnosis had OS 2y of 31.4% vs. 70.8% for later relapses. Patients with initial M-EwS and relapse < 2 years from diagnosis had OS 2y of 18.9% vs. 71.2%. Patients with combined relapses had higher risk of post-relapse death compared to other patterns of failure (p = 0.003), an effect that was largely driven by the one seen in patients with initial L-EwS. Conclusions: Overall survival of patients with first recurrent EwS after having received modern era therapy with interval compressed chemotherapy on recent COG trials remains poor, particularly for M-EwS, early relapse and combined relapses. These data will inform the design of trials for this relapsed population and provide critical data to help counsel patients about goals of care at first relapse.

Article Details

Volume / Issue Vol. 43, Issue 16_suppl
Published June 01, 2025
Pages 10035-10035
ISSN 0732-183X
Publisher Lippincott Williams & Wilkins

Journal Info

Journal of Clinical Oncology

Lippincott Williams & Wilkins

ISSN: 0732-183X Health Sciences

Authors (13)

S

Sarah Cohen-Gogo

The Hospital for Sick Children, Toronto, ON, Canada

A

Allen Buxton

Children's Oncology Group, Arcadia, CA

N

Natalie DelRocco

Children's Oncology Group, Monrovia, CA

M

Mark D. Krailo

Children's Oncology Group, Monrovia, CA

R

Richard B. Womer

Children's Hospital of Philadelphia, Philadelphia, PA

L

Leo Mascarenhas

Cedar-Sinai Health Sciences University, Los Angeles, CA

P

Patrick Leavey

J

Julia Lynne Glade Bender

Memorial Sloan Kettering Cancer Center, New York, NY

O

Odion Binitie

S

Safia K. Ahmed

Mayo Clinic Arizona, Phoenix, AZ

D

Damon R. Reed

K

Katherine A. Janeway

Dana-Farber/Boston Children's Cancer and Blood Disorders Center, Boston, MA

S

Steven G. DuBois