血液学
医学
抗体-药物偶联物
药品
药物开发
结合
医学物理学
药理学
内科学
抗体
单克隆抗体
免疫学
数学
数学分析
作者
Alfonso López de Sá,Cristina Díaz‐Tejeiro,Elisa Poyatos‐Racionero,Cristina Nieto‐Jiménez,Lucía Paniagua‐Herranz,Adrián Sanvicente,Emiliano Calvo,Pedro Pérez‐Segura,Víctor Moreno,Francisco Morís,Alberto Ocaña
标识
DOI:10.1186/s13045-023-01519-0
摘要
Antibody-drug conjugates (ADCs) have emerged as a novel therapeutic strategy that has successfully reached patient treatment in different clinical scenarios. ADCs are formed by an antibody against a specific tumor-associated antigen (TAA), a cytotoxic payload, and a chemical linker that binds both. To this regard, most efforts have been focused on target identification, antibody design and linker optimization, but other relevant aspects for clinical development have not received the necessary attention. In this article using data from approved ADCs, we evaluated all characteristics of these agents, including payload physicochemical properties, in vitro potency, drug antibody ratio (DAR), exposure-response relationships, and clinical development strategies. We suggest that compounds with best options for clinical development include those with optimal payload physicochemical properties and cleavable linkers that would lead to a bystander effect. These modalities can facilitate the development of ADCs in indications with low expression of the TAA. Early clinical development strategies including changes in the schedule of administration with more frequent doses are also discussed in the context of an efficient strategy. In conclusion, we highlight relevant aspects that are needed for the optimal development of ADCs in cancer, proposing options for improvement.
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