Comprehensive Cancer Center, Ohio State University, Columbus, OH 43210, USA.
Department of Radiation Oncology, Wexner Medical Center, Ohio State University, Columbus, OH 43210, USA.
Viruses. 2023 Jun 17;15(6):1388. doi: 10.3390/v15061388.
Several oncogenic viruses are associated with approximately 20% of human cancers. Experimental models are crucial for studying the pathogenicity and biological aspects of oncogenic viruses and their potential mechanisms in tumorigenesis. Current cell models have considerable limitations such as: their low yield, genetic and epigenetic modification, and reduction in tumor heterogeneity during long propagation. Cancer cell lines are limited and not appropriate for studying the viral life cycle, for example, natural viral life cycles of HPV and EBV, and their persistence and latency in epithelial cells are poorly understood, since these processes are highly related to epithelial differentiation. Therefore, there is an urgent need of reliable human physiological cell models to study viral life cycle and cancer initiation. Conditional cell reprogramming (CCR) is a rapid and robust cell culture system, where the cells can be established from minimally invasive or noninvasive specimens and their lineage functions preserved during the long-term culture. These CR cells retain their ability to differentiate at air-liquid interface (ALI). Here, we recapitulated the applications of CR and ALI approaches in modeling host-virus interactions and viral-mediated tumorigenesis.
几种致癌病毒与人类大约 20%的癌症有关。实验模型对于研究致癌病毒的致病性和生物学特性及其在肿瘤发生中的潜在机制至关重要。目前的细胞模型存在许多局限性,例如产量低、遗传和表观遗传修饰以及肿瘤异质性在长时间繁殖过程中的减少。癌细胞系的局限性使其不适宜研究病毒的生命周期,例如 HPV 和 EBV 的自然病毒生命周期,以及它们在上皮细胞中的持续存在和潜伏状态,因为这些过程与上皮细胞分化高度相关。因此,迫切需要可靠的人类生理细胞模型来研究病毒的生命周期和癌症的发生。条件细胞重编程(CCR)是一种快速而强大的细胞培养系统,可从微创或非侵入性标本中建立细胞,并在长期培养过程中保留其谱系功能。这些 CR 细胞在气液界面(ALI)仍保持分化能力。在这里,我们总结了 CCR 和 ALI 方法在模拟宿主-病毒相互作用和病毒介导的肿瘤发生中的应用。