PO.EN01.01 · 内分泌肿瘤
通过循环肿瘤DNA分析监测ER+晚期乳腺癌患者来源异种移植物对新一代口服SERD camizestrant的反应
Monitoring response to camizestrant next-generation oral SERD in ER+ advanced breast cancer patient-derived xenografts via circulating tumor DNA profiling
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摘要 Abstract
中文摘要
背景:虽然循环肿瘤DNA(ctDNA)在临床上被广泛用于疾病监测,但其临床前应用因动物模型中血量小的既有认知限制而受限。患者来源的异种移植(PDX)模型为ctDNA分析提供了独特优势,因为人类肿瘤DNA可与鼠源背景DNA区分开来,相比肿瘤与正常DNA分离更复杂的临床样本,能够更清晰地评估治疗诱导的变化。
方法:我们利用ER阳性晚期乳腺癌PDX模型(包括野生型和ESR1突变肿瘤)建立了一个临床前ctDNA监测平台。数字微滴PCR(ddPCR)可判断是否存在足够的人类ctDNA水平(人类重复元件)以进行下一代测序(NGS)。这一特性能够随时间监测ctDNA水平,以及对各种治疗的反应。小鼠接受camizestrant(一种新一代口服选择性雌激素受体降解剂(SERD))作为单药治疗以及与CDK4/6抑制联合治疗。在小鼠血浆样本中定量了人类特异性LINE-1 DNA水平和肿瘤特异性体细胞突变的变异等位基因频率(VAF),并与肿瘤体积测量相关联。
结果:无论作为单药还是与CDK4/6抑制联合,camizestrant治疗在野生型和ESR1突变PDX模型中均导致肿瘤体积和生长速率的显著降低,这与ddPCR测得的小鼠血浆中人类特异性LINE-1的明显下降相关。ctDNA中的变异等位基因频率显著下降,与camizestrant单药或与CDK4/6抑制联合治疗后的抗肿瘤疗效相关。
结论:本研究建立了一个稳健、微创的临床前平台,用于评估肿瘤学研究中基于ctDNA的生物标志物和治疗疗效。该方法能够在难以单独使用人类样本解决的临床前模型中,研究ctDNA释放生物学和治疗反应。这些发现证明了临床前ctDNA监测在为临床生物标志物策略提供信息并优化ER+乳腺癌治疗开发方面的转化潜力。
查看英文原文 English abstract
Background: While circulating tumor DNA (ctDNA) is widely used clinically for disease monitoring, its preclinical application has been limited by perceived constraints of small blood volumes in animal models. Patient-derived xenograft (PDX) models offer unique advantages for ctDNA analysis, as human tumor DNA can be distinguished from murine background DNA, enabling clearer assessment of treatment-induced changes compared to clinical samples where tumor and normal DNA separation is more complex.
Methods: We developed a preclinical ctDNA monitoring platform using ER-positive advanced breast cancer PDX models, including both wild-type and ESR1-mutant tumors. Digital Droplet PCR (ddPCR) informs whether sufficient human ctDNA levels are present (human repeat elements) to perform next generation sequencing (NGS). This feature allows the ability to monitor ctDNA levels over time, in response to various therapies. Mice received camizestrant, a next-generation oral selective estrogen receptor degrader (SERD), as monotherapy and in combination with CDK4/6 inhibition. Human-specific LINE-1 DNA levels and variant allele frequency (VAF) of tumor-specific somatic mutations were quantified in mouse plasma samples and correlated with tumor volume measurements.
Results: Treatment with camizestrant, either as monotherapy or in combination with CDK4/6 inhibition, resulted in significant reductions in tumor volume and growth rate in both wild-type and ESR1-mutant PDX models which correlated with marked decreases in human-specific LINE-1 in mouse plasma, as measured by ddPCR. Variant allele frequency in ctDNA decreased significantly, correlating with anti-tumor efficacy following treatment with camizestrant monotherapy or in combination with CDK4/6 inhibition.
Conclusions: This study establishes a robust, minimally invasive preclinical platform for evaluating ctDNA-based biomarkers and treatment efficacy in oncology research. The approach enables investigation of ctDNA release biology and treatment response in preclinical models that are difficult to address using human samples alone. These findings demonstrate the translational potential of preclinical ctDNA monitoring to inform clinical biomarker strategies and optimize therapeutic development in ER+ breast cancer.
利益披露 Disclosure
S. Ros*,
AstraZeneca Employment, Stock, Stock Option.
P. Labrousse*,
AstraZeneca Employment, Stock, Stock Option.
H. Russell,
AstraZeneca Employment, Stock, Stock Option.
F. Henderson,
AstraZeneca Employment, Stock, Stock Option.
S. Talbot,
AstraZeneca Employment, Stock, Stock Option.
B. Phillips,
AstraZeneca Employment, Stock, Stock Option.
T. Klinowska,
AstraZeneca Employment, Stock, Stock Option.
C. Morrow,
AstraZeneca Employment, Stock, Stock Option.
C. Crafter,
AstraZeneca Employment, Stock, Stock Option.
D. Stetson,
AstraZeneca Employment, Stock, Stock Option.
D. Hodgson,
AstraZeneca Employment, Stock, Stock Option.
J. Hadfield,
AstraZeneca Employment, Stock, Stock Option.