Understanding the Toxicity Profile of Approved ADCs.

IF 5.5 3区 医学 Q1 PHARMACOLOGY & PHARMACY Pharmaceutics Pub Date : 2025-02-14 DOI:10.3390/pharmaceutics17020258
Pablo Ballestín, Alfonso López de Sá, Cristina Díaz-Tejeiro, Lucía Paniagua-Herranz, Adrián Sanvicente, Igor López-Cade, Pedro Pérez-Segura, Carlos Alonso-Moreno, Cristina Nieto-Jiménez, Alberto Ocaña
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Abstract

Background: Antibody-drug conjugates (ADCs) represent a novel therapeutic class that combines an antibody against a tumor-associated antigen (TAA), a payload, and a linker that binds these two components. Serious adverse events (SAEs), particularly those of grade 3 (G3) or higher, frequently contribute to the abandonment of ADCs during clinical development. Methods: In this study, we analyzed the toxicity profiles of all approved ADCs, aiming to uncover correlations between their safety profiles and the specific characteristics of their components. Results: In our analysis, dose reductions, dose delays, treatment discontinuations, and ≥G3 toxicities were not significantly different across payload types. Similarly, no association was found between the payload mechanism of action and ≥G3 toxicities, including anemia, neutropenia, febrile neutropenia, thrombocytopenia, and diarrhea. By exploring the specific toxicities of ADCs observed by organ, we identified that most were related to the payload mechanism of action, like the ≥G3 diarrhea observed in 10% of patients treated with sacituzumab govitecan (the payload SN-38 is the active metabolite of irinotecan), and very few were related to the presence of the TAA in normal tissue (presence of Nectin-4 in skin and ≥G3 rash toxicity in 14% of patients treated with enfortumab vedotin). In line with this, no major differences in ≥G3 toxicities were identified in studies with different levels of the TAA (trastuzumab deruxtecan in Destiny Breast Studies with different HER2 expression levels). Conclusions: Our analysis reveals that most ADC toxicities are driven by the payload's effects on non-transformed tissues; however, a detailed analysis of each ADC component should be taken into consideration.

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了解已批准adc的毒性概况。
背景:抗体-药物偶联物(adc)是一种新型的治疗类药物,它结合了针对肿瘤相关抗原(TAA)的抗体、有效载荷和结合这两种成分的连接体。严重不良事件(sae),特别是3级(G3)或更高级别的不良事件,经常导致临床开发期间放弃adc。方法:在本研究中,我们分析了所有批准的adc的毒性特征,旨在揭示其安全性特征与其组分的特定特征之间的相关性。结果:在我们的分析中,剂量减少、剂量延迟、停止治疗和≥G3毒性在不同的有效载荷类型之间没有显著差异。同样,未发现有效载荷作用机制与≥G3毒性(包括贫血、中性粒细胞减少症、发热性中性粒细胞减少症、血小板减少症和腹泻)之间存在关联。通过器官观察adc的特异性毒性,我们发现大多数与有效载荷作用机制有关,如10%的sacituzumab govitecan治疗患者观察到≥G3的腹泻(有效载荷SN-38是伊立替康的活性代谢物),很少与正常组织中TAA的存在有关(皮肤中存在Nectin-4, 14%的使用enfortumab vedotin治疗的患者出现≥G3的皮疹毒性)。与此相一致的是,在不同水平的TAA(曲妥珠单抗德鲁德替康在不同HER2表达水平的Destiny Breast研究中)的研究中,未发现≥G3毒性的主要差异。结论:我们的分析表明,大多数ADC毒性是由有效载荷对非转化组织的影响驱动的;但是,应该考虑对每个ADC组件进行详细分析。
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来源期刊
Pharmaceutics
Pharmaceutics Pharmacology, Toxicology and Pharmaceutics-Pharmaceutical Science
CiteScore
7.90
自引率
11.10%
发文量
2379
审稿时长
16.41 days
期刊介绍: Pharmaceutics (ISSN 1999-4923) is an open access journal which provides an advanced forum for the science and technology of pharmaceutics and biopharmaceutics. It publishes reviews, regular research papers, communications,  and short notes. Covered topics include pharmacokinetics, toxicokinetics, pharmacodynamics, pharmacogenetics and pharmacogenomics, and pharmaceutical formulation. Our aim is to encourage scientists to publish their experimental and theoretical details in as much detail as possible. There is no restriction on the length of the papers. The full experimental details must be provided so that the results can be reproduced.
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