PO.CL01.17 · 临床研究

以EGFR/RAS/SIAH通路为中心、基于生物标志物预测TNBC肿瘤复发/化疗耐药/患者生存

EGFR/RAS/SIAH pathway-centered biomarker-based prediction of tumor relapse/chemo-resistance/patient survival in TNBC

编号 5376 展板 14 时间 4/21 09:00–12:00 区域 Section 47 主讲 Amy Tang, PhD
分会场 Prognostic Biomarkers 3
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作者与单位 Authors & Affiliations

Amy H. Tang1, Mary L. Guye2, Billur Samli3, Janet S. Winston3, Richard A. Hoefer4

1Biomedical and Translational Sciences, Old Dominion University, Norfolk, VA,2Surgical Oncology, Sentara Surgery Specialists, Newport News, VA,3Pathology Sciences Medical Group, Sentara Norfolk General Hospital, Norfolk, VA,4Sentara Health Research Center, Sentara Cancer Network, Norfolk, VA

摘要 Abstract

中文摘要
引言:三阴性乳腺癌(TNBC)是一种侵袭性乳腺癌亚型,对BRCA1突变携带者和年轻黑人/白人女性的影响尤为突出。Pembrolizumab联合新辅助化疗(NACT)已成为高危早期TNBC的新标准治疗(SOC)。病理完全缓解(pCR)预示良好结局,而伴高危残余癌负荷(RCB)的病理不完全缓解(pIR)与早期肿瘤复发、化疗-免疫治疗耐药和不良生存相关。许多接受类似治疗、具有相同TNM和RCB分类的患者经历明显的治疗差异、不同的复发率和迥异的生存。目前的方法在临床上难以高精度地预测复发/耐药/生存。 方法:我们对来自Sentara癌症网络的一个大型TNBC患者队列(577例)进行了EGFR、Ki67和SIAH表达的IHC染色,其中48%为黑人/非裔美国人患者,48%为白人患者。Sentara综合乳腺中心为我们的退伍军人(诺福克海军基地)以及许多来自弗吉尼亚州Hampton Roads的社会经济弱势、医疗服务不足和保险不足的低收入患者提供服务,该地区拥有180万种族多元化的人口。 结果:我们报告,NACT后残余肿瘤中高SIAH表达反映EGFR/K-RAS/SIAH通路持续激活(ON),预示SOC治疗无效、NACT后肿瘤持续生长,从而预示早期复发、化疗耐药和不良生存。相反,NACT后残余肿瘤中无或极低SIAH表达反映SOC治疗有效、EGFR/K-RAS/SIAH通路失活(OFF),从而预示肿瘤缓解和生存延长。我们发现,在本研究中,我们的黑人/非裔美国人TNBC患者与白人对照相比,死亡率显著更高、生存缩短,与SEER/CDC数据库相似。 结论:我们发现,EGFR/RAS/SIAH通路的持续激活是TNBC恶性的主要驱动力。作为一种进化上保守的RING结构域E3连接酶,SIAH是TNBC中用于患者风险分层、肿瘤复发预测和种族差异检测的新型预后生物标志物。SIAH是TNBC恶性中的一个主要肿瘤脆弱点。我们旨在证明SIAH的预后能力,并开发一个以SIAH为中心的生物标志物panel,用于高危TNBC的患者风险分层和复发/耐药/生存预测。
查看英文原文 English abstract
Introduction: Triple-negative breast cancer (TNBC) is an aggressive breast cancer subtype that disproportionately affects BRCA1 mutation carriers and young Black/white women. Pembrolizumab and neoadjuvant chemotherapy (NACT) has become the new standard of care (SOC) for high-risk early-stage TNBC. Pathologic complete response (pCR) predicts good outcome, whereas pathologic incomplete response (pIR) with high-risk residual cancer burden (RCB) is correlated with early tumor relapse, chemo-IO-resistance, and poor survival. Many similarly treated patients with identical TNM and RCB classifications experience clear treatment disparity, distinct relapse rates, and disparate survival. Current methods fall short in predicting relapse/resistance/survival with high precision in the clinic. Methods: We have conducted IHC staining of EGFR, Ki67, and SIAH expression in a large cohort of TNBC patients (577), of which 48% patients are Black/AA and 48% patients are white patients, from the Sentara Cancer Network. The Sentara Comprehensive Breast Centers have served our military veterans (Naval Norfolk Station) as well as many socio-economically disadvantaged, medically underserved, and underinsured low-income patients from Hampton Roads Virginia, with a racially diverse population of 1.8 million. Results: We reported that high SIAH expression in residual tumors post-NACT reflects persistent EGFR/K-RAS/SIAH pathway activation (ON), predicts ineffective SOC therapy, continuous tumor growth post-NACT, which predicts early relapse, chemo-resistance, and poor survival. Conversely, no or super-low SIAH expression in residual tumors post-NACT reflects effective SOC therapy, EGFR/K-RAS/SIAH pathway inactivation (OFF), which predicts tumor remission and prolonged survival. We found that our Black/AA TNBC patients suffer a significantly higher mortality and reduced survival when compared to their white counterparts in this study, similar to the SEER/CDC databases. Conclusions: We found that persistent EGFR/RAS/SIAH pathway activation is a major driving force in TNBC malignancy. As an evolutionarily conserved RING-domain E3 ligase, SIAH is a new prognostic biomarker for patient risk stratification, tumor relapse prediction, and racial disparity detection in TNBC. SIAH is a major tumor vulnerability in TNBC malignancy. We aim to demonstrate the prognostic power of SIAH and develop a SIAH-centered biomarker panel for patient risk stratification and relapse/resistance/survival prediction in high-risk TNBC.
利益披露 Disclosure
A. H. Tang, None.. M. L. Guye, None.. B. Samli, None.. J. S. Winston, None.. R. A. Hoefer, None.

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