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◆ Journal of Medicinal Chemistry2025-11-26· Biodistribution

A Novel Radiotracerfor NTSR1-Targeted PET Imagingof Tumor: Preclinical and First-in-Human Studies

Jiamin Zhu, Hui Yuan, Boyu Tan, Xiufeng Liu, Kun Qian, Yuanpeng Jiang, Renda Li, Wenqing Zhang, Chunrong Qu, Zhen Cheng, Lei Jiang

原始摘要(英文原文)· Original abstract
Abstract Neurotensin receptor 1 (NTSR1) is overexpressed in various cancers, making it an attractive target for tumor imaging and therapy. However, current NTSR1-targeting peptides derived from neurotensin (NT) analogs face challenges including rapid metabolic clearance and insufficient tumor uptake, limiting their clinical translation. To address this, we developed a novel probe, [68Ga]Ga-DOTA-NT-20.3-IPBA, by conjugating the DOTA-NT-20.3 probe with an albumin-binding moiety (4-(p-iodophenyl)butyric acid [IPBA]). The resulting tracer exhibited enhanced lipophilicity and albumin-binding capacity, while maintaining reasonable in vitro stability, radiochemical yield, and purity (all >95%). In vitro and in vivo evaluations confirmed its high affinity and specificity for NTSR1. Clinical PET/CT imaging demonstrated significant tracer accumulation in lung adenocarcinoma, with a tumor-to-lung ratio of 7.89 ± 0.76 at 60 min postinjection and a favorable biodistribution profile. Collectively, [68Ga]Ga-DOTA-NT-20.3-IPBA shows high potential as a PET tracer for NTSR1-expressing tumors and DOTA-NT-20.3-IPBA may be a promising candidate for future theranostic development.
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