1 Department of Clinical Sciences Lund, Medical Radiation Physics, Lund University , Lund, Sweden .
2 Department of Biomedical Engineering, Stony Brook University , Stony Brook, New York.
Cancer Biother Radiopharm. 2018 Aug;33(6):213-220. doi: 10.1089/cbr.2017.2412. Epub 2018 Jul 23.
Hybrid positron emission tomography (PET)-magnetic resonance imaging (MRI) systems have been taken in use as new clinical diagnostic tools including detection and therapy planning of cancer. To reduce the amount of contrast agents injected in patients while fully benefitting both modalities, dual-modality probes are required.
This study was first aimed at developing a hybrid PET-MRI probe by labeling superparamagnetic iron oxide nanoparticles (SPIONs) with Cu using a fast and chelator-free conjugation method, and second, to demonstrate the ability of the agent to target sentinel lymph nodes (SLNs) in vivo using simultaneous PET-MRI imaging.
High labeling efficiency of 97% produced within 10-15 min was demonstrated at room temperature. Cu-SPIONs were chemically stable in mouse serum for 24 h and after intradermal injection in the hind paw of C57BL/6J mice, demonstrated specific accumulation in the SLN. Simultaneous PET-MRI clearly demonstrated visualization of Cu-SPIONs, in dynamic and static imaging sequences up to 24 h after administration.
The use of a single hybrid probe and simultaneous hybrid imaging provides an efficient, complementary integration of quantitation and is expected to improve preoperative planning and intraoperative guidance of cancer treatments.
混合正电子发射断层扫描(PET)-磁共振成像(MRI)系统已作为新的临床诊断工具投入使用,包括癌症的检测和治疗计划。为了在充分受益于两种模式的同时减少向患者注射的造影剂的量,需要使用双模式探针。
本研究首先旨在通过使用快速且无螯合剂的缀合方法用 Cu 标记超顺磁氧化铁纳米颗粒(SPION)来开发混合 PET-MRI 探针,其次,通过同时进行 PET-MRI 成像来证明该试剂在体内靶向前哨淋巴结(SLN)的能力。
在室温下,10-15 分钟内即可达到 97%的高标记效率。Cu-SPION 在小鼠血清中 24 小时内化学稳定,并且在 C57BL/6J 小鼠的后爪皮内注射后,在 SLN 中表现出特异性聚集。在给药后 24 小时内的动态和静态成像序列中,同时进行的 PET-MRI 清楚地显示了 Cu-SPION 的可视化。
使用单个混合探针和同时的混合成像提供了一种高效、互补的定量整合,有望改善癌症治疗的术前规划和术中指导。