乳腺癌
间质细胞
单克隆抗体
肿瘤微环境
癌症研究
免疫疗法
计算生物学
医学
免疫系统
表型
后天抵抗
癌症
治疗方法
结合
信号转导
曲妥珠单抗
生物信息学
过程(计算)
生物
抗药性
癌细胞
嵌合抗原受体
乳腺肿瘤
癌症免疫疗法
癌症治疗
靶向治疗
免疫学
癌症治疗
获得性免疫系统
作者
Minji Seo,Jangsoon Lee,Naoto T. Ueno
标识
DOI:10.1002/advs.202515498
摘要
Antibody-drug conjugates (ADCs) have revolutionized the treatment landscape of breast cancer by combining the precision of monoclonal antibodies with the potency of cytotoxic agents. Despite the clinical success of ADCs-with 4 FDA-approved agents to date, and 15 for the entire cancer landscape-their therapeutic durability is frequently undermined by acquired resistance. Rather than arising solely from tumor-intrinsic alterations, ADC resistance reflects a multi-layered process shaped by dynamic interactions among cancer cells and the tumor microenvironment (TME), with activation of adaptive signaling networks. For example, stromal architecture, vascular heterogeneity, and immune modulation intersect with clonal evolution, phenotypic plasticity, and pathway reprogramming, thereby constraining ADC delivery and activity. Cutting-edge technologies such as spatial omics, single-cell profiling, functional genomics, and patient-derived models are redefining how these resistance mechanisms are mapped and understood in situ. Building on these insights, emerging therapeutic strategies aim to overcome resistance through mechanism-guided interventions, including next-generation ADC designs, co-targeting of compensatory signaling pathways, and biomarker-informed therapeutic strategies. Together, these integrated biological and technological perspectives provide a framework for developing more durable and precisely tailored ADC-based therapies in breast cancer.
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