Beyond Conventional Monoclonals: Novel Antibody Formats and Derivatives as the Next Frontier in Cancer Therapy.

IF 1.4 4区 医学 Q3 ONCOLOGY
Chemotherapy Pub Date : 2026-06-29 DOI:10.1159/000553142
Rossana Roncato, Diletta Pasin, Emanuela Dell Apos Aquila, Romano Danesi, Marzia Del Re
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引用次数: 0

Abstract

Background: Monoclonal antibodies (mAbs) and their derivatives represent a central pillar of contemporary oncology, with expanding complexity in molecular design and clinical application. Beyond unconjugated mAbs, bispecific antibodies (bsAbs), trispecific antibodies (tsAbs), and antibody-drug conjugates (ADCs) introduce additional pharmacological dimensions that directly impact efficacy, toxicity, and resistance. BsAbs were developed as pharmacological matchmakers to simultaneously engage tumor antigens and immune receptors, physically bridging effectors and malignant cells to promote immunological synapse formation. TsAbs extend this concept by enabling coordinated engagement of three targets. ADCs exploit mAb specificity to deliver highly potent, otherwise intolerable cytotoxic payloads directly into tumor cells, expanding the therapeutic window in hematologic and solid tumors.

Summary: Clinical performance is tightly linked to molecular architecture: bsAb/tsAb activity depends on valency, target geometry, and Fc configuration, whereas ADC efficacy reflects a tripartite pharmacology integrating target engagement, intracellular payload release, and bystander cytotoxicity. Despite their remarkable potency, antibody-based platforms remain vulnerable to resistance, which may arise through target-dependent mechanisms, including antigen downregulation and epitope masking, or target-independent processes, such as altered intracellular trafficking, lysosomal dysfunction, payload efflux, and adaptive survival signaling.

Key message: A comprehensive understanding of antibody architecture, target biology, pharmacokinetic/pharmacodynamic behavior, toxicity profiles, and resistance mechanisms is essential to optimize treatment selection and sequencing. Collectively, mAbs, bsAbs/tsAbs, and ADCs provide the mechanistic and technological basis for next-generation platforms, including peptide-drug conjugates and antibody-radionuclide conjugates.

超越传统的单克隆:新的抗体格式和衍生物作为癌症治疗的下一个前沿。
单克隆抗体(mab)及其衍生物是当代肿瘤学的核心支柱,在分子设计和临床应用方面日益复杂。除了非偶联单抗,双特异性、三特异性(bsAbs/tsAbs)和抗体-药物偶联物(adc)引入了额外的药理学维度,直接影响疗效、毒性和耐药性。bsab被开发为药理学配对者,同时结合肿瘤抗原和免疫受体、物理桥接效应物和恶性细胞,促进免疫突触的形成。tsb扩展了这一概念,使三个目标能够协调接触。adc利用单克隆抗体的特异性,直接向肿瘤细胞中传递高效的、难以忍受的细胞毒性有效载荷,扩大了血液和实体肿瘤的治疗窗口。临床表现与分子结构密切相关:bsAbs/tsAbs的活性取决于价态、靶标几何形状和Fc构型,而ADC的疗效反映了靶标接合、细胞内有效载荷释放和旁观者细胞毒性的三重药理学。尽管它们具有显著的效力,但基于抗体的平台仍然容易受到耐药性的影响,这可能通过靶标依赖机制(包括抗原下调和表位掩蔽)或靶标独立过程(如细胞内运输改变、溶酶体功能障碍、有效载荷外排和适应性生存信号传导)产生。全面了解抗体结构、靶标生物学、药代动力学/药效学(PK/PD)行为、毒性特征和耐药机制对于优化治疗选择和测序至关重要。总的来说,单克隆抗体、bsab /tsAbs和adc为下一代平台提供了机制和技术基础,包括肽-药物偶联物和抗体-放射性核素偶联物。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Chemotherapy
Chemotherapy 医学-药学
CiteScore
5.80
自引率
0.00%
发文量
34
审稿时长
6-12 weeks
期刊介绍: This journal publishes original research articles and state-of-the-art reviews on all aspects of antimicrobial and antitumor chemotherapy. The results of experimental and clinical investigations into the microbiological and pharmacologic properties of antibacterial, antiviral and antitumor compounds are major topics of publication. Papers selected for the journal offer data concerning the efficacy, toxicology, and interactions of new drugs in single or combined applications. Studies designed to determine the pharmacokinetic and pharmacodynamics properties of similar preparations and comparing their efficacy are also included. Special emphasis is given to the development of drug-resistance, an increasing problem worldwide.
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