Haralambieva Iana, Iankov Ianko, Hasegawa Kosei, Harvey Mary, Russell Stephen J, Peng Kah-Whye
1Molecular Medicine Program, Mayo Clinic College of Medicine, Rochester, Minnesota, USA.
Mol Ther. 2007 Mar;15(3):588-97. doi: 10.1038/sj.mt.6300076. Epub 2007 Jan 16.
The innate antiviral responses of tumor cells are often impaired but may still be sufficient to impede the intratumoral spread of an oncolytic virus. Here, we establish that the oncolytic measles virus (MV-eGFP) induces interferon (IFN) production in human myeloma and ovarian cancer cells. In addition, MV gene expression and virus progeny production were inhibited by IFN treatment of these tumor cells. The P gene of wild-type measles virus encodes P/V/C proteins known to antagonize IFN induction and/or response. We therefore engineered MV-eGFP for IFN evasion and more efficient intratumoral spread by arming it with the P gene from wild-type IC-B strain MV, thus generating MV-eGFP-Pwt. The chimeric virus exhibited reduced IFN sensitivity and diminished capacity to induce IFN in BJAB lymphoma, ARH-77 myeloma cells, and activated peripheral blood mononuclear cells. Interestingly, unlike the wild-type MV, MV-eGFP-Pwt was unable to shut down IFN induction completely. In immunocompromised mice bearing human myeloma xenografts, intravenously administered MV-eGFP-Pwt showed significantly enhanced oncolytic potency compared to MV-eGFP. These results indicate that oncolytic viruses are subject to control by the innate immune defenses of human tumor cells and may therefore be more effective if their natural ability to combat innate immunity is maintained.
肿瘤细胞的先天性抗病毒反应通常受损,但可能仍足以阻碍溶瘤病毒在肿瘤内的传播。在此,我们证实溶瘤麻疹病毒(MV-eGFP)可在人骨髓瘤细胞和卵巢癌细胞中诱导干扰素(IFN)产生。此外,对这些肿瘤细胞进行IFN处理可抑制MV基因表达和病毒子代产生。野生型麻疹病毒的P基因编码已知可拮抗IFN诱导和/或反应的P/V/C蛋白。因此,我们通过用来自野生型IC-B株MV的P基因武装MV-eGFP,对其进行改造以实现逃避IFN并更有效地在肿瘤内传播,从而产生MV-eGFP-Pwt。嵌合病毒在BJAB淋巴瘤、ARH-77骨髓瘤细胞和活化的外周血单核细胞中表现出对IFN的敏感性降低以及诱导IFN的能力减弱。有趣的是,与野生型MV不同,MV-eGFP-Pwt无法完全阻断IFN诱导。在携带人骨髓瘤异种移植瘤的免疫受损小鼠中,静脉注射MV-eGFP-Pwt与MV-eGFP相比显示出显著增强的溶瘤效力。这些结果表明,溶瘤病毒受到人类肿瘤细胞先天性免疫防御的控制,因此,如果维持其对抗先天性免疫的天然能力,可能会更有效。