Mechanism of Action and Pharmacokinetics of Approved Bispecific Antibodies

双特异性抗体 药代动力学 医学 药理学 机制(生物学) 作用机理 抗体 单克隆抗体 免疫学 生物 哲学 遗传学 体外 认识论
作者
Seong‐Min Choi,Ju‐Hee Lee,Soyeon Ko,Soon‐Sun Hong,Hyo‐Eon Jin
出处
期刊:Biomolecules & Therapeutics [Korean Society of Applied Pharmacology]
卷期号:32 (6): 708-722 被引量:27
标识
DOI:10.4062/biomolther.2024.146
摘要

Bispecific antibodies represent a significant advancement in therapeutic antibody engineering, offering the ability to simultaneously target two distinct antigens. This dual-targeting capability enhances therapeutic efficacy, especially in complex diseases, such as cancer and autoimmune disorders, where drug resistance and incomplete target coverage are prevalent challenges. Bispecific antibodies facilitate immune cell engagement and disrupt multiple signaling pathways, providing a more comprehensive treatment approach than traditional monoclonal antibodies. However, the intricate structure of bispecific antibodies introduces unique pharmacokinetic challenges, including issues related to their absorption, distribution, metabolism, and excretion, which can significantly affect their efficacy and safety. This review provides an in-depth analysis of the structural design, mechanisms of action, and pharmacokinetics of the currently approved bispecific antibodies. It also highlights the engineering innovations that have been implemented to overcome these challenges, such as Fc modifications and advanced dimerization techniques, which enhance the stability and half-life of bispecific antibodies. Significant progress has been made in bispecific antibody technology; however, further research is necessary to broaden their clinical applications, enhance their safety profiles, and optimize their incorporation into combination therapies. Continuous advancements in this field are expected to enable bispecific antibodies to provide more precise and effective therapeutic strategies for a range of complex diseases, ultimately improving patient outcomes and advancing precision medicine.
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