医学
加药
Pet成像
正电子发射断层摄影术
肿瘤科
治疗药物监测
治疗指标
治疗效果
药品
尿路上皮癌
癌症研究
内科学
药理学
尿路上皮癌
药代动力学
成像生物标志物
最大耐受剂量
治疗方法
有效剂量(辐射)
功能成像
癌症
临床前试验
生物标志物
临床前研究
核医学
分子成像
文本挖掘
作者
Akhilesh Mishra,Ajay Sharma,Kuldeep Gupta,Dhanush S. Banka,Burles A. Johnson,Hoffman-Censits Jean,P. C. Huang,David J. McConkey,S. Nimmagadda
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-01-07
卷期号:12 (2): eady1111-eady1111
被引量:1
标识
DOI:10.1126/sciadv.ady1111
摘要
Optimizing dosing strategies is critical to balance effectiveness and toxicity, especially for drugs with narrow therapeutic windows such as antibody-drug conjugates (ADCs). This study evaluates whether positron emission tomography (PET) imaging targeting Nectin-4 can noninvasively quantify the real-time interaction of the ADC enfortumab vedotin (EV) with tumors in urothelial carcinoma. Using the imaging agent [68Ga]AJ647, dynamic changes in the interaction of EV with Nectin-4 were measured across preclinical models and correlated with therapeutic responses. PET imaging identified dose-dependent variations in Nectin-4 engagement, with suboptimal EV doses resulting in incomplete Nectin-4 engagement and increased tumor growth. Crucially, PET-measured target engagement predicted therapeutic outcomes more reliably than either drug dose or baseline target expression. By defining effective target engagement levels needed for optimal therapeutic outcomes, PET imaging provides a clear benchmark for dosing decisions, maximizing efficacy while potentially reducing exposure to higher, toxic doses and thereby enhancing patient safety.
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