体内分布
体内
分子成像
离体
PEG比率
整合素
连接器
癌症研究
肽
临床前影像学
显像剂
正电子发射断层摄影术
化学
医学
体外
核医学
受体
生物化学
经济
生物技术
操作系统
生物
计算机科学
财务
作者
Wenhao Liu,Xiushuang Yuan,Siqi Zhang,Xingkai Wang,Xin Gao,Hao Tian,Dun Wang,Ming‐Rong Zhang,Rui Wang,Kuan Hu
出处
期刊:ChemBioChem
[Wiley]
日期:2025-08-14
卷期号:26 (18): e202500508-e202500508
被引量:3
标识
DOI:10.1002/cbic.202500508
摘要
The dual-targeting strategy has demonstrated advantages in enhancing tumor uptake, improving imaging contrast, and ultimately increasing tumor detection rate. PD-L1 is overexpressed on multiple tumor cells and regulated by αvβ3-integrin. In this study, a dual-targeting radiotracer, [64Cu]-PEG-RGD-TPP-1, is developedfor PET/CT imaging of both PD-L1 and αvβ3-integrin simultaneously, achieving high contrast, enhanced tumor uptake, and prolonged tumor retention time. [64Cu]-PEG-RGD-TPP-1 comprises the peptide TPP-1 and cyclic peptide c(RGDyC), linked via a PEG linker. The dual-targeting molecule had a moderate serum stability (≈60%) in vivo after 1 hr. This dual-targeting radiotracer is evaluated and compared with the single-targeting radiotracers [64Cu]-PEG-TPP-1 and [64Cu]-TPP-1. PET imaging and ex vivo biodistribution studies show that [64Cu]-PEG-RGD-TPP-1 exhibits higher tumor uptake than its single-targeting counterparts. Moreover, the dual-targeting radiotracer demonstrated potential for ultrasmall tumor imaging and could be combined with X-ray irradiation to further enhance PET imaging contrast, thereby improving tumor-targeting efficiency. These findings suggest that [64Cu]-PEG-RGD-TPP-1 is a promising noninvasive tracer for detecting tumors expressing PD-L1 and/or integrin avβ3, with the prospect of clinical implementation.
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