An Overview of In Vitro Assays of (64)Cu-, (68)Ga-, (125)I-, and (99m)Tc-Labelled Radiopharmaceuticals Using Radiometric Counters in the Era of Radiotheranostics

放射治疗诊断学时代利用放射性计数器对 (64)Cu、(68)Ga、(125)I 和 (99m)Tc 标记的放射性药物进行体外测定的概述

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Abstract

Radionuclides are unstable isotopes that mainly emit alpha (α), beta (β) or gamma (γ) radiation through radiation decay. Therefore, they are used in the biomedical field to label biomolecules or drugs for diagnostic imaging applications, such as positron emission tomography (PET) and/or single-photon emission computed tomography (SPECT). A growing field of research is the development of new radiopharmaceuticals for use in cancer treatments. Preclinical studies are the gold standard for translational research. Specifically, in vitro radiopharmaceutical studies are based on the use of radiopharmaceuticals directly on cells. To date, radiometric β- and γ-counters are the only tools able to assess a preclinical in vitro assay with the aim of estimating uptake, retention, and release parameters, including time- and dose-dependent cytotoxicity and kinetic parameters. This review has been designed for researchers, such as biologists and biotechnologists, who would like to approach the radiobiology field and conduct in vitro assays for cellular radioactivity evaluations using radiometric counters. To demonstrate the importance of in vitro radiopharmaceutical assays using radiometric counters with a view to radiogenomics, many studies based on (64)Cu-, (68)Ga-, (125)I-, and (99m)Tc-labeled radiopharmaceuticals have been revised and summarized in this manuscript.

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