School of Biomedical Engineering & Imaging Sciences, King's College London, St Thomas' Hospital, London, SE1 7EH, U.K.
Institute of Pharmaceutical Science, School of Cancer and Pharmaceutical Sciences, King's College London, London, SE1 9NH, U.K.
Chem Rev. 2022 Jun 8;122(11):10266-10318. doi: 10.1021/acs.chemrev.1c00767. Epub 2022 May 12.
The arrival of cell-based therapies is a revolution in medicine. However, its safe clinical application in a rational manner depends on reliable, clinically applicable methods for determining the fate and trafficking of therapeutic cells in vivo using medical imaging techniques─known as in vivo cell tracking. Radionuclide imaging using single photon emission computed tomography (SPECT) or positron emission tomography (PET) has several advantages over other imaging modalities for cell tracking because of its high sensitivity (requiring low amounts of probe per cell for imaging) and whole-body quantitative imaging capability using clinically available scanners. For cell tracking with radionuclides, ex vivo direct cell radiolabeling, that is, radiolabeling cells before their administration, is the simplest and most robust method, allowing labeling of any cell type without the need for genetic modification. This Review covers the development and application of direct cell radiolabeling probes utilizing a variety of chemical approaches: organic and inorganic/coordination (radio)chemistry, nanomaterials, and biochemistry. We describe the key early developments and the most recent advances in the field, identifying advantages and disadvantages of the different approaches and informing future development and choice of methods for clinical and preclinical application.
细胞疗法的问世是医学的一场革命。然而,为了安全合理地将其应用于临床,我们需要可靠的、临床上可应用的方法,以便利用医学成像技术来确定治疗性细胞在体内的命运和迁移情况,这种方法被称为体内细胞示踪。与其他成像方式相比,放射性核素成像(包括单光子发射计算机断层扫描[SPECT]和正电子发射断层扫描[PET])具有一些优势,因为其具有很高的灵敏度(每个细胞只需少量探针即可进行成像),并且可以使用临床可用的扫描仪进行全身定量成像。对于放射性核素示踪细胞,细胞直接放射性标记(也就是在细胞给药前对其进行放射性标记)是最简单和最稳健的方法,它允许对任何类型的细胞进行标记,而无需进行基因修饰。本综述涵盖了利用各种化学方法(包括有机和无机/配位[放射性]化学、纳米材料和生物化学)开发和应用直接细胞放射性标记探针的情况。我们描述了该领域的关键早期发展和最新进展,确定了不同方法的优缺点,并为临床和临床前应用的方法的未来发展和选择提供了信息。