研究概要
曲妥珠单抗是首个用于乳腺癌(BC)治疗的人源化单克隆抗体(Mab)。
中文摘要
曲妥珠单抗是首个用于乳腺癌(BC)治疗的人源化单克隆抗体(Mab)。曲妥珠单抗Fab结构域与人表皮生长因子受体2(HER2)受体结合的高亲和力,其K d值<1 nM,同时还伴随Fc结构域与NK 细胞和白细胞中Fc受体的相互作用,从而通过抗体依赖性细胞毒性(ADCC)杀伤肿瘤细胞。曲妥珠单抗阻断过表达的HER2受体介导的二聚化及随后的细胞内信号传导,从而抑制癌性生长。然而,曲妥珠单抗耐药(TR)在治疗1年内成为主要问题。磷脂酰肌醇3-激酶(PI3K)通路突变、与雌激素受体的交叉对话、黏蛋白1(MUC1)蛋白过表达、胰岛素样生长因子I受体等是参与TR的关键通路。在本综述中,我们提供了TR的分子视角以及利用BC干细胞(BCSC)为基础的治疗、PI3K通路抑制剂、基于MUC1的治疗等克服TR的可能补救措施。我们还分析了TR前时代和TR后时代的专利和临床试验,以合理化克服TR的可能步骤。我们的分析表明,曲妥珠单抗单药治疗不再适用于HER2+ BC治疗。此外,使用其他抗体如帕妥珠单抗和蛋白激酶抑制剂的联合治疗以及靶向泛素蛋白酶体通路等通路将是BC治疗的未来选择。总体而言,本综述基于已发表研究文章、临床试验结果和专利数据的最新信息,提供了涉及TR的分子机制及其潜在逃逸方式的详细总结。
展开英文摘要原文
Trastuzumab is the first humanised monoclonal antibody (Mab) developed for breast cancer (BC) therapy. The high affinity of Trastuzumab Fab-domain binding to the human epidermal growth factor receptor 2 (HER2) receptor, with a K d value of <1 nM, is also accompanied by Fc domain interaction with Fc-receptors in natural killer cells and leukocytes, enabling the killing of tumour cells through antibody-directed cellular cytotoxicity (ADCC). Trastuzumab blocks the over-expressed HER2 receptor-mediated dimerization and consequent intracellular signalling, leading to cancerous growth. However, the trastuzumab resistance (TR) became the major problem within 1 year of treatment. The mutation in phosphatidylinositol 3'-kinase (PI3K) pathway, cross-talk with estrogen receptors, over-expression of Mucin 1 (MUC1) protein, insulin-like growth factor I receptor, etc., are key pathways involved in TR. In this review, we have provided a molecular view of TR and the possible remedies for overcoming TR using BC stem cell (BCSC)-based therapy, PI3K pathway inhibitors, MUC1-based treatment, etc. We have also analysed the patents and clinical trials from the pre-TR and post-TR era to rationalise the possible steps to overcome TR. Our analysis implies that Trastuzumab monotherapy no longer applies to HER2+ BC treatment. Further, combination therapy using other antibodies like pertuzumab and protein kinase inhibitors and targeting pathways like the ubiquitin proteasome pathway will be the future option for BC Treatment. Overall, this review provides a detailed summary of the molecular mechanisms involving TR and its potential ways of evasion, based on updated information from published research articles, clinical trial outcomes, and patent data.
论文信息
- 作者
- Hasan G、Pramanik S、Singh S、Gurav P、Penumaka SM、Kumar S、Mandal D
- 单位
- Department of Biotechnology, National Institute of Pharmaceutical Education and Research, Hajipur 844102, India.India
- 文献类型
- 综述
- 期刊
- Pharmaceutics2026 Apr 22