Department of Radiology and Nuclear Imaging, Harlem Hospital Center/Columbia University Medical Center , New York, New York, USA.
Department of Surgery, City of Hope Medical Center , Los Angeles, California, USA.
Mol Ther Oncolytics. 2015 Feb 4;1:14007. doi: 10.1038/mto.2014.7. eCollection 2015.
Oncolytic viruses have made their mark on the cancer world as a potential therapeutic option, with the possible advantages of reduced side effects and strengthened treatment efficacy due to higher tumor selectivity. Results have been so promising, that oncolytic viral treatments have now been approved for clinical trials in several countries. However, clinical studies may benefit from the ability to noninvasively and serially identify sites of viral targeting via molecular imaging in order to provide safety, efficacy, and toxicity information. Furthermore, molecular imaging of oncolytic viral therapy may provide a more sensitive and specific diagnostic technique to detect tumor origin and, more importantly, presence of metastases. Several strategies have been investigated for molecular imaging of viral replication broadly categorized into optical and deep tissue imaging, utilizing several reporter genes encoding for fluorescence proteins, conditional enzymes, and membrane protein and transporters. Various imaging methods facilitate molecular imaging, including computer tomography, magnetic resonance imaging, positron emission tomography, single photon emission CT, gamma-scintigraphy, and photoacoustic imaging. In addition, several molecular probes are used for medical imaging, which act as targeting moieties or signaling agents. This review will explore the preclinical and clinical use of in vivo molecular imaging of replication-competent oncolytic viral therapy.
溶瘤病毒作为一种潜在的治疗选择,在癌症领域引起了关注,其可能的优势在于副作用降低和治疗效果增强,因为其对肿瘤的选择性更高。由于结果非常有前景,溶瘤病毒治疗现在已经在几个国家获得了临床试验的批准。然而,临床研究可能受益于通过分子成像非侵入性和连续识别病毒靶向部位的能力,以提供安全性、疗效和毒性信息。此外,溶瘤病毒治疗的分子成像可能提供一种更敏感和特异的诊断技术,以检测肿瘤起源,更重要的是,检测转移。已经广泛研究了几种用于病毒复制的分子成像策略,分为光学和深部组织成像,利用几种报告基因编码荧光蛋白、条件酶、膜蛋白和转运体。各种成像方法促进了分子成像,包括计算机断层扫描、磁共振成像、正电子发射断层扫描、单光子发射 CT、伽马闪烁成像和光声成像。此外,还使用了几种分子探针进行医学成像,它们作为靶向部分或信号剂。这篇综述将探讨复制型溶瘤病毒治疗的体内分子成像的临床前和临床应用。