Best Overall Response–Associated Signature to Doxorubicin in Soft Tissue Sarcomas: A Transcriptomic Analysis from ANNOUNCE

肉瘤 阿霉素 软组织肉瘤 肿瘤科 队列 医学 内科学 脂肪肉瘤 基因签名 小梁 软组织 化疗 病理 生物 基因 基因表达 遗传学
作者
Jiangang Liu,David S. Moura,Robin L. Jones,Amit Aggarwal,Philip J. Ebert,Andrew J. Wagner,Jennifer Wright,Javier Martín‐Broto,William D. Tap
出处
期刊:Clinical Cancer Research [American Association for Cancer Research]
卷期号:30 (11): 2598-2608 被引量:2
标识
DOI:10.1158/1078-0432.ccr-23-3936
摘要

Abstract Purpose: This exploratory analysis evaluated the tumor samples of the patients treated with doxorubicin (with or without olaratumab) in a negative phase III ANNOUNCE trial to better understand the complexity of advanced soft tissue sarcomas (STS) and to potentially identify its predictive markers. Experimental Design: RNA sequencing was performed on pretreatment tumor samples (n = 273) from the ANNOUNCE trial to evaluate response patterns and identify potential predictive treatment markers for doxorubicin. A BOR-associated signature to doxorubicin (REDSARC) was created by evaluating tumors with radiographic response versus progression. An external cohort of doxorubicin-treated patients from the Spanish Group for Research on Sarcomas (GEIS) was used for refinement and validation. Results: A total of 259 samples from the trial were considered for analysis. Comparative analyses by the treatment arm did not explain the negative trial. However, there was an association between the BOR signature and histologic subtype (χ2P = 2.0e−7) and grade (P = 0.002). There were no associations between the BOR signature and gender, age, ethnicity, or stage. Applied to survival outcomes, REDSARC was also predictive for progression-free survival (PFS) and overall survival (OS). Using the GEIS cohort, a refined 25-gene signature was identified and applied to the ANNOUNCE cohort, where it was predictive of PFS and OS in leiomyosarcoma, liposarcoma, and other sarcoma subtypes, but not in undifferentiated pleomorphic sarcoma. Conclusions: The refined REDSARC signature provides a potential tool to direct the application of doxorubicin in sarcomas and other malignancies. Validation and further refinement of the signature in other potentially subtype specific prospective cohorts is recommended.
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