研究概要
未标注:通过Fc工程增强抗体效应功能具有提高治疗效果的潜力。
中文摘要
未经标记:通过Fc工程增强抗体效应功能具有改善治疗效果的潜力。了解治疗前后肿瘤微环境中FcγR的表达和分布,可能有助于指导免疫参与型抗体的设计和患者分层。在本研究中,我们考察了HER2+和三阴性乳腺癌(TNBC)中表达FcR的免疫效应细胞,包括新辅助化疗耐药性疾病。FcγRIIIa表达、FcγRIIIa+ NK细胞和经典激活(M1样)巨噬细胞与改善的抗HER2抗体疗效相关。FcγRIIIa蛋白以及FcγRIIIa+ NK细胞和巨噬细胞存在于原发性TNBC中,并在治疗耐药肿瘤中保留。FcγRIIIa在基线和 新辅助化疗后的残留肿瘤中与叶酸受体α阳性(FRα+)肿瘤区域在空间上相关。设计并生成了识别两种乳腺癌相关抗原——HER2和新兴TNBC靶点FRα——的野生型和Fc工程抗体,使其具有增强的FcγRIIIa表达效应细胞参与能力。糖工程改造(包括去除N-连接Fc聚糖中的岩藻糖)与Fc点突变的组合极大地提高了抗体对FcγRIIIa的亲和力和滞留。Fc工程抗体增强了对HER2+乳腺癌和TNBC的免疫效应活性,改变了NK细胞和肿瘤条件化巨噬细胞的促炎细胞因子产生,并使巨噬细胞向促炎状态偏移。此外,Fc工程抗体在低于等效野生型抗体的剂量下限制了原位HER2+和FRα+乳腺癌异种移植物的生长,并将表达FcγRIIIa的细胞募集到肿瘤中。通过结合糖工程和Fc点突变来设计抗体,以增强肿瘤浸润效应细胞的FcγRIIIa结合能力,可能是开发针对侵袭性和治疗耐药性乳腺癌患者疗法的一种有前景的策略。意义:对乳腺癌中Fc受体和免疫细胞的评估使得能够通过结合糖工程和Fc突变,为靶向肿瘤的单克隆抗体开发定制工程策略,从而增强免疫刺激和抗癌特性。
展开英文摘要原文
UNLABELLED: Fc engineering to enhance antibody effector functions harbors the potential to improve therapeutic effects. Understanding FcγR expression and distribution in the tumor microenvironment prior to and following treatment may help guide immune-engaging antibody design and patient stratification. In this study, we investigated FcR-expressing immune effector cells in HER2+ and triple-negative breast cancers (TNBC), including neoadjuvant chemotherapy-resistant disease. FcγRIIIa expression, FcγRIIIa+ NK cells, and classically activated (M1-like) macrophages correlated with improved anti-HER2 antibody efficacy. FcγRIIIa protein and FcγRIIIa+ NK cells and macrophages were present in primary TNBC and retained in treatment-resistant tumors. FcγRIIIa was spatially associated with folate receptor alpha-positive (FRα+) tumor areas at baseline and in residual tumors following neoadjuvant chemotherapy. Wild-type and Fc-engineered antibodies recognizing two breast cancer-associated antigens, HER2 and the emerging TNBC target FRα, were designed and generated to have increased FcγRIIIa-expressing effector cell engagement. The combination of glycoengineering, including fucose removal from the N-linked Fc glycan, and Fc point mutations greatly increased antibody affinity for and retention on FcγRIIIa. The Fc-engineered antibodies enhanced immune effector activity against HER2+ breast cancer and TNBC, altering proinflammatory cytokine production by NK cells and tumor-conditioned macrophages and skewing macrophages toward proinflammatory states. Furthermore, the Fc-engineered antibodies restricted orthotopic HER2+ and FRα+ breast cancer xenograft growth at doses suboptimal for equivalent wild-type antibodies and recruited FcγRIIIa-expressing cells into tumors. Antibody design through combined glycoengineering and Fc point mutations to enhance FcγRIIIa engagement of tumor-infiltrating effector cells may be a promising strategy for developing therapies for patients with aggressive and treatment-resistant breast cancers.
SIGNIFICANCE: Assessment of Fc receptors and immune cells in breast cancer enables development of tailored engineering strategies for tumor-targeting monoclonal antibodies with enhanced immune-stimulating and anticancer attributes by combining glycoengineering and Fc mutations.
论文信息
- 作者
- Chenoweth AM、Cheung A、Chauhan J、Adams R、Osborn G、Stoker K、Grandits M、Laddach R
- 单位
- Breast Cancer Now Research Unit, School of Cancer & Pharmaceutical Sciences, King's College London, Guy's Cancer Centre, London, United Kingdom.United Kingdom
- 文献类型
- 非美国政府资助研究
- 期刊
- Cancer research2025 Nov 14