Lee Kong Chian School of Medicine, Nanyang Technological University Singapore, 59 Nanyang Drive, Singapore 636921.
Cixi Institute of Biomedical Engineering, Ningbo Institute of Industrial Technology and Ningbo Institute of Materials Technology and Engineering, Chinese Academy of Sciences, Ningbo, P.R. China, 315201.
Theranostics. 2018 Nov 29;8(22):6210-6232. doi: 10.7150/thno.26610. eCollection 2018.
Positron emission tomography (PET)-magnetic resonance (MR) or single photon emission computed tomography (SPECT)-MR hybrid imaging is being used in daily clinical practice. Due to its advantages over stand-alone PET, SPECT or MR imaging, in many areas such as oncology, the demand for hybrid imaging techniques is increasing dramatically. The use of multimodal imaging probes or biomarkers in a single molecule or particle to characterize the imaging subjects such as disease tissues certainly provides us with more accurate diagnosis and promotes therapeutic accuracy. A limited number of multimodal imaging probes are being used in preclinical and potential clinical investigations. The further development of multimodal PET-MR and SPECT-MR imaging probes includes several key elements: novel synthetic strategies, high sensitivity for accurate quantification and high anatomic resolution, favourable pharmacokinetic profile and target-specific binding of a new probe. This review thoroughly summarizes all recently available and noteworthy PET-MR and SPECT-MR multimodal imaging probes including small molecule bimodal probes, nano-sized bimodal probes, small molecular trimodal probes and nano-sized trimodal probes. To the best of our knowledge, this is the first comprehensive overview of all PET-MR and SPECT-MR multimodal probes. Since the development of multimodal PET-MR and SPECT-MR imaging probes is an emerging research field, a selection of 139 papers were recognized following the literature review. The challenges for designing multimodal probes have also been addressed in order to offer some future research directions for this novel interdisciplinary research field.
正电子发射断层扫描(PET)-磁共振(MR)或单光子发射计算机断层扫描(SPECT)-MR 混合成像目前正在临床实践中得到应用。由于其优于独立的 PET、SPECT 或 MR 成像的优势,在肿瘤学等许多领域,对混合成像技术的需求正在急剧增加。在单个分子或颗粒中使用多模态成像探针或生物标志物来对成像对象(如疾病组织)进行特征描述,这肯定为我们提供了更准确的诊断并促进了治疗的准确性。目前,只有少数多模态成像探针被用于临床前和潜在的临床研究中。进一步开发多模态 PET-MR 和 SPECT-MR 成像探针包括几个关键要素:新的合成策略、用于准确量化的高灵敏度和高解剖分辨率、有利的药代动力学特性和新探针的靶向特异性结合。这篇综述全面总结了所有最近可用的值得关注的 PET-MR 和 SPECT-MR 多模态成像探针,包括小分子双模态探针、纳米级双模态探针、小分子三模态探针和纳米级三模态探针。据我们所知,这是第一篇关于所有 PET-MR 和 SPECT-MR 多模态探针的综述。由于多模态 PET-MR 和 SPECT-MR 成像探针的开发是一个新兴的研究领域,因此在文献综述后,我们选择了 139 篇论文进行了介绍。还讨论了设计多模态探针的挑战,以便为这个新的跨学科研究领域提供一些未来的研究方向。