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放射性标记脂质体用于核医学成像探针。

Radiolabeled Liposomes for Nuclear Imaging Probes.

机构信息

Department of Nuclear Medicine and Molecular Imaging, Radiological Sciences Division, Singapore General Hospital, Outram Road, Singapore 169608, Singapore.

Duke-NUS Medical School, 8 College Road, Singapore 169857, Singapore.

出版信息

Molecules. 2023 Apr 28;28(9):3798. doi: 10.3390/molecules28093798.

Abstract

Quantitative nuclear imaging techniques are in high demand for various disease diagnostics and cancer theranostics. The non-invasive imaging modality requires radiotracing through the radioactive decay emission of the radionuclide. Current preclinical and clinical radiotracers, so-called nuclear imaging probes, are radioisotope-labeled small molecules. Liposomal radiotracers have been rapidly developing as novel nuclear imaging probes. The physicochemical properties and structural characteristics of liposomes have been elucidated to address their long circulation and stability as radiopharmaceuticals. Various radiolabeling methods for synthesizing radionuclides onto liposomes and synthesis strategies have been summarized to render them biocompatible and enable specific targeting. Through a variety of radionuclide labeling methods, radiolabeled liposomes for use as nuclear imaging probes can be obtained for in vivo biodistribution and specific targeting studies. The advantages of radiolabeled liposomes including their use as potential clinical nuclear imaging probes have been highlighted. This review is a comprehensive overview of all recently published liposomal SPECT and PET imaging probes.

摘要

定量核医学成像技术在各种疾病诊断和癌症治疗学中需求量很大。这种非侵入性的成像方式需要通过放射性核素的放射性衰变发射进行放射性示踪。目前的临床前和临床放射性示踪剂,即所谓的核医学成像探针,是放射性同位素标记的小分子。作为新型核医学成像探针,脂质体放射性示踪剂发展迅速。已经阐明了脂质体的物理化学性质和结构特征,以解决其作为放射性药物的长循环和稳定性问题。综述了各种将放射性核素标记到脂质体上的合成方法和合成策略,以使其具有生物相容性并能够进行特异性靶向。通过各种放射性核素标记方法,可以获得用于体内生物分布和特异性靶向研究的放射性标记脂质体作为核医学成像探针。强调了放射性标记脂质体的优势,包括将其用作潜在的临床核医学成像探针。这篇综述全面概述了最近发表的所有脂质体单光子发射计算机断层扫描和正电子发射断层扫描成像探针。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a5ea/10180453/8d09972318e5/molecules-28-03798-sch001.jpg

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