Semenova A V, Sivolobova G F, Grazhdantseva A A, Agafonov A P, Kochneva G V
Federal Budgetary Research Institution «State Research Center of Virology and Biotechnology «Vector», Koltsovo, Novosibirsk region, 630559, Russia.
Acta Naturae. 2022 Jul-Sep;14(3):46-56. doi: 10.32607/actanaturae.11719.
Accurate measurement of tumor size and margins is crucial for successful oncotherapy. In the last decade, non-invasive imaging modalities, including optical imaging using non-radioactive substrates, deep-tissue imaging with radioactive substrates, and magnetic resonance imaging have been developed. Reporter genes play the most important role among visualization tools; their expression in tumors and metastases makes it possible to track changes in the tumor growth and gauge therapy effectiveness. Oncolytic viruses are often chosen as a vector for delivering reporter genes into tumor cells, since oncolytic viruses are tumor-specific, meaning that they infect and lyse tumor cells without damaging normal cells. The choice of reporter transgenes for genetic modification of oncolytic viruses depends on the study objectives and imaging methods used. Optical imaging techniques are suitable for in vitro studies and small animal models, while deep-tissue imaging techniques are used to evaluate virotherapy in large animals and humans. For optical imaging, transgenes of fluorescent proteins, luciferases, and tyrosinases are used; for deep-tissue imaging, the most promising transgene is the sodium/iodide symporter (NIS), which ensures an accumulation of radioactive isotopes in virus-infected tumor cells. Currently, NIS is the only reporter transgene that has been shown to be effective in monitoring tumor virotherapy not only in preclinical but also in clinical studies.
准确测量肿瘤大小和边界对于成功的肿瘤治疗至关重要。在过去十年中,已经开发出了非侵入性成像技术,包括使用非放射性底物的光学成像、使用放射性底物的深部组织成像以及磁共振成像。报告基因在可视化工具中发挥着最重要的作用;它们在肿瘤和转移灶中的表达使得追踪肿瘤生长变化和评估治疗效果成为可能。溶瘤病毒常被选作将报告基因导入肿瘤细胞的载体,因为溶瘤病毒具有肿瘤特异性,也就是说它们能感染并裂解肿瘤细胞而不损伤正常细胞。用于溶瘤病毒基因改造的报告转基因的选择取决于研究目的和所使用的成像方法。光学成像技术适用于体外研究和小动物模型,而深部组织成像技术则用于评估大型动物和人类的病毒疗法。对于光学成像,使用荧光蛋白、荧光素酶和酪氨酸酶的转基因;对于深部组织成像,最有前景的转基因是钠/碘同向转运体(NIS),它能确保放射性同位素在病毒感染的肿瘤细胞中积累。目前,NIS是唯一一种已被证明不仅在临床前研究而且在临床研究中监测肿瘤病毒疗法都有效的报告转基因。