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循环肿瘤DNA指导的乳腺癌内分泌耐药分子截获

Circulating Tumor DNA-Guided Molecular Interception of Endocrine Resistance in Breast Cancer

  • 摘要: 雌激素受体1(estrogen receptor 1,ESR1)突变是激素受体阳性、人表皮生长因子受体2阴性晚期乳腺癌接受芳香化酶抑制剂联合细胞周期蛋白依赖性激酶4/6抑制剂后常见的获得性耐药机制。血浆循环肿瘤DNA(circulating tumor DNA,ctDNA)可在影像学进展前发现新发ESR1突变,为提前干预提供可能。本文综述ESR1克隆演化、检测与阳性确认、PADA-1和SERENA-6研究及临床实施边界。随机研究显示,在严格筛选的人群中,维持原细胞周期蛋白依赖性激酶4/6抑制剂并将芳香化酶抑制剂更换为经验证的雌激素受体降解剂,可延长无进展生存期和第二次无进展生存期。然而,同一药物早换与进展后再用尚无直接比较,总生存数据亦未成熟。该策略须以可靠检测、无同步进展、循证方案及当地监管允许为前提,不能简化为“ctDNA阳性即换药”。

     

    Abstract: Aromatase inhibitor therapy combined with a cyclin-dependent kinase 4/6 (CDK4/6) inhibitor is a standard first-line treatment for hormone receptor-positive, human epidermal growth factor receptor 2-negative advanced breast cancer. Estrogen receptor 1 (ESR1) mutations commonly emerge under this selective pressure and mediate acquired endocrine resistance. Serial plasma circulating tumor DNA (ctDNA) testing can identify an emerging ESR1-mutant clone before clinical or radiographic progression, creating a potential window for molecular interception. In this review, molecular interception denotes a treatment change prompted by a newly emerging, analytically credible, and actionable resistance alteration while disease remains clinically and radiographically controlled. We review ESR1 clonal evolution, assay selection, preanalytical quality control, confirmation of low-frequency variants, randomized evidence, and practical limits. PADA-1 provided proof of concept. SERENA-6 subsequently showed that, in a defined population receiving first-line aromatase inhibitor plus a CDK4/6 inhibitor, replacing the aromatase inhibitor with camizestrant while continuing the same CDK4/6 inhibitor prolonged progression-free survival. Longer follow-up also showed improvement in second progression-free survival. These findings support the biological and clinical feasibility of ctDNA-guided early switching, but they do not establish superiority over using the same agent after radiographic progression; overall survival data remain immature. Clinical decisions should therefore incorporate assay performance, confirmation that the mutation is truly emergent, exclusion of synchronous progression and dominant non-ESR1 resistance, treatment safety and availability, and patient preference. The evidence remains closely tied to the studied assay, drug combinations, duration of first-line disease control, and absence of visceral crisis; extrapolation beyond these conditions is not justified. Testing every 2–3 months reflects the trial design rather than a universal monitoring standard. Regulatory status also differs across regions. Treatment should follow a locally approved indication or an appropriately governed prospective study and should not be triggered by an isolated positive ctDNA result. Wider use in China will require standardized testing, direct early-versus-late sequencing comparisons, mature survival data, real-world validation, and health-economic evaluation.

     

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