LBPO.CL01 · 临床研究 · Late-Breaking
肿瘤CTR1与血清铜动态变化揭示了一个与高级别三阴性乳腺癌生物学相关的协调性铜轴
Tumor CTR1 and serum copper dynamics reveal a coordinated copper axis linked to high-grade triple-negative breast cancer biology
作者与单位 Authors & Affiliations
摘要 Abstract
中文摘要
目的:铜是一种必需的微量元素,与血管生成、肿瘤代谢和治疗耐药相关,然而在乳腺癌(BC)全身治疗期间其动态行为仍缺乏充分表征。本研究的目的是评估新辅助治疗期间循环铜的纵向变化(ΔCopper),并确定铜转运蛋白生物学(特别是CTR1表达,即主要的高亲和力铜输入体)是否与不同乳腺癌亚型的治疗应答相关。
实验方法:在一个前瞻性新辅助队列中,在治疗开始前和新辅助治疗完成时采集配对血浆样本。定量测定总血清铜水平,ΔCopper定义为治疗后与治疗前浓度之差。采用标准病理学标准评估治疗应答。为补充全身测量,对1632例乳腺癌患者的治疗前组织进行了回顾性转录组学分析,以评估CTR1表达。采用系统操作特征来评估CTR1表达区分应答者与非应答者的能力。
结果:我们在前瞻性队列中观察到新辅助治疗期间存在明显的、亚型特异性的铜动态变化。非应答者,尤其是在三阴性BC亚型中,与应答者相比表现出ΔCopper的显著升高,提示耐药性疾病中全身铜动员增强。相比之下,激素受体阳性肿瘤表现出较为温和的铜波动。转录组学分析显示,CTR1表达升高与侵袭性亚型中缺乏应答显著相关,且在三阴性疾病中具有更好的区分性能。重要的是,全身ΔCopper与肿瘤CTR1表达在生物学上表现出一致性,支持这样一个模型:耐药肿瘤表现出铜需求增加,这一点既反映在细胞转运蛋白层面,也反映在循环中的全身层面。
结论:这些发现提供了首个前瞻性证据,表明新辅助治疗期间循环铜的动态变化与治疗应答相关,并与BC中的铜转运蛋白生物学相一致。ΔCopper作为一种有前景的、微创的铜依赖性治疗耐药生物标志物而崭露头角,尤其是在三阴性BC中。总之,这些数据支持进一步研究铜代谢作为预测性生物标志物和治疗脆弱点,并为在新辅助环境中进行配对生物样本分析以捕获治疗诱导的代谢适应提供了理论依据。
Dartmouth-Health.org 达特茅斯癌症中心,One Medical Center Drive, Lebanon, NH 03756
查看英文原文 English abstract
Purpose: Copper is an essential trace element implicated in angiogenesis, tumor metabolism, and therapeutic resistance, yet its dynamic behavior during systemic treatment of breast cancer (BC) remains poorly characterized. The purpose of this study was to evaluate longitudinal changes in circulating copper (ΔCopper) during neoadjuvant therapy and to determine whether copper transporter biology, specifically CTR1 expression, the primary high-affinity copper importer, is associated with treatment response across breast cancer subtypes.
Experimental Procedures: In a prospective neoadjuvant cohort, paired plasma samples were collected before initiation of therapy and at completion of neoadjuvant treatment. Total serum copper levels were quantified, and ΔCopper was defined as the difference between post-treatment and pre-treatment concentrations. Treatment response was assessed using standard pathologic criteria. To complement systemic measurements, a retrospective transcriptomic analyses of pretreatment tissue from 1,632 breast cancer patients were performed to evaluate CTR1 expression. System operating features were used to assess the ability of CTR1 expression to discriminate responders from non-responders. Results: We observed distinct, subtype-specific copper dynamics during neoadjuvant therapy in the prospective cohort. Non-responders, particularly within the triple-negative BC subtype, demonstrated a pronounced increase in ΔCopper compared with responders, suggesting heightened systemic copper mobilization in resistant disease. In contrast, hormone-receptor-positive tumors exhibited more modest copper fluctuations. Transcriptomic analyses revealed that elevated CTR1 expression was significantly associated with lack of response in aggressive subtypes, with improved discriminatory performance in triple-negative disease. Importantly, systemic ΔCopper and tumor CTR1 expression appeared biologically concordant, supporting a model in which resistant tumors exhibit increased copper demand, reflected both at the cellular transporter level and systemically in the circulation.
Conclusions: These findings provide the first prospective evidence that dynamic changes in circulating copper during neoadjuvant therapy are associated with treatment response and align with copper transporter biology in BC. ΔCopper emerges as a promising, minimally invasive biomarker of copper-dependent therapeutic resistance, particularly in triple-negative BC. Together, these data support further investigation of copper metabolism as a predictive biomarker and therapeutic vulnerability, and they establish a rational for paired biospecimen analyses in the neoadjuvant setting to capture treatment-induced metabolic adaptations.
Dartmouth-Health.org Dartmouth Cancer CenterOne Medical Center Drive, Lebanon, NH 03756
利益披露 Disclosure
V. C. Shanbhag, None..
N. Gudekar, None..
M. Yasir, None..
K. Conrad, None..
S. Anakpeba-Dinguyella, None..
P. Sutar, None..
P. Rao, None..
M. Petris, None..
L. Vahdata, None..
C. Papageorgiou, None.