中文摘要
靶向免疫治疗通过利用免疫系统清除肿瘤细胞的能力,显著改善了血液系统恶性肿瘤患者的结局。在多发性骨髓瘤(MM)中,靶向B细胞成熟抗原(BCMA)、G蛋白偶联受体C类第5组成员D(GPRC5D)和Fc受体样5(FcRL5)的双特异性T细胞衔接器(BsAb)已在三类难治性患者中展现出显著的临床活性。然而,对BsAb的应答并非普遍,且耐药常在治疗过程中出现。介导耐药的机制包括肿瘤内在因素或免疫依赖性因素。已报道的肿瘤内在因素包括通过靶基因缺失或突变导致的抗原丢失(双等位基因或功能性)、可溶性BCMA升高(针对BCMA靶向BsAb)、高肿瘤负荷以及髓外疾病。免疫介导的耐药在很大程度上取决于T细胞适应性及耐受性免疫环境。理解这些机制将有助于设计优化的BsAb治疗方案,并为这些分子与其他抗MM药物及免疫治疗的序贯和联合应用提供有依据的策略。
展开英文摘要原文
Targeted immunotherapy has significantly improved the outcome of patients with hematological malignancies by leveraging the power of the immune system to eliminate tumor cells. In multiple myeloma (MM), bispecific T-cell engagers (BsAb) targeting B-cell maturation antigen (BCMA), G protein-coupled receptor, class C, group 5, member D (GPRC5D), and Fc receptor-like 5 (FcRL5) have already demonstrated remarkable clinical activity in triple-class refractory patients.
However, responses to BsAb are not universal, and resistance often emerges while on therapy. Mechanisms mediating resistance are tumor intrinsic or immune dependent. Reported tumor intrinsic factors include antigenic loss (biallelic or functional) through deletions or mutations of target genes, increased soluble BCMA (for BCMA targeting BsAb), high tumor burden, and extramedullary disease.
Immune-mediated resistance are largely dependent on T-cell fitness and tolerant immune environment. Understanding these mechanisms will allow the design of optimized BsAb therapy and an informed approach to sequencing and combining these molecules with other anti-MM agents and immune therapies.
论文信息
- 作者
- Lee H、Neri P、Bahlis NJ
- 单位
- Arnie Charbonneau Cancer Institute, University of Calgary, Calgary, Canada.Germany
- 期刊
- Hematology. American Society of Hematology. Education Program2023 Dec 8