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新型溶瘤病毒oHSV2hGM-CSF的构建及其抗肿瘤作用

[Construction of a new oncolytic virus oHSV2hGM-CSF and its anti-tumor effects].

作者信息

Shi Gui-Lan, Zhuang Xiu-Fen, Han Xiang-Ping, Li Jie, Zhang Yu, Zhang Shu-Ren, Liu Bin-Lei

机构信息

Department of Immunology, Cancer Institute & Hospital, Chinese Academy of Medical Sciences and Peking Union Medical College, Beijing 100021, China.

出版信息

Zhonghua Zhong Liu Za Zhi. 2012 Feb;34(2):89-95. doi: 10.3760/cma.j.issn.0253-3766.2012.02.003.

Abstract

OBJECTIVE

The aim of this study was to construct a new oncolytic virus oHSV2hGM-CSF and evaluate its oncolytic activity in vitro and in vivo in parallel with oHSV1hGM-CSF.

METHODS

oHSV2hGM-CSF was a replication-competent, attenuated HSV2 based on the HG52 virus (an HSV2 strain). It was engineered to be specific for cancer by deletion of the viral genes ICP34.5 and ICP47 and insertion of the gene encoding hGM-CSF. To measure the in vitro killing effect of the virus, 15 human tumor cell lines (HeLa, Eca-109, PG, HepG2, SK/FU, CNE-2Z, PC-3, SK-OV3, A-549, 786-0, MCF-7, Hep-2, HT-29, SK-Mel-28, U87-MG) and mouse melanoma (B16R) cell line were seeded into 24-well plates and infected with viruses at MOI = 1 (multiplicity of infection, MOI), or left uninfected. The cells were harvested 24 and 48 hours post infection, and observed under the microscope. For animal studies, the oncolytic viruses were administered intratumorally (at 3-day interval) at a dose of 2.3 x 10(6) PFU (plaque forming unit, PFU) for three times when the tumor volume reached 7-8 mm3. The tumor volume was measured at 3-day intervals and animal survival was recorded.

RESULTS

Both oHSV2hCM-CSFand oHSV1hGM-CSF induced widespread cytopathic effects at 24 h after infection. OHSV2hGM-CSF, by contrast, produced more plaques with a syncytial phenotype than oHSV1hGM-CSF. In the in vitro killing experiments for the cell lines HeLa, HepG2, SK-Mel-28, B16R and U87-MG, oHSV2hGM-CSF eradicated significantly more cells than oHSV1hGM-CSF under the same conditions. For the mouse experiments, it was observed that oHSV2hGM-CSF significantly inhibited the tumor growth. At 15 days after B16R tumor cells inoculation, the tumor volumes of the PBS, oHSV1hGCM-CSF and oHSV2hGM-CSF groups were (374.7 +/- 128.24) mm3, (128.23 +/- 45.32) mm3 (P < 0.05, vs. PBS group) or (10.06 +/- 5.1) mm3 (P < 0.01, vs. PBS group), respectively (mean +/- error). The long term therapeutic effect of oHSV2hGM-CSF on the B16R animal model was evaluated by recording animal survival over 110 days after tumor cells inoculation whereas all the mice in the PBS group died by day 22 (P < 0.01). The anti-tumor mechanism of the newly constructed oHSV2hGM-CSF against B16R cell tumor appeared to include the directly oncolytic activity and the induction of anti-tumor immunity to some degree.

CONCLUSION

The findings of our study demonstrate that the newly constructed oHSV2hGM-CSF has potent anti-tumor activity in vitro to many tumor cell lines and in vive to the transplanted B16R tumor models.

摘要

目的

本研究旨在构建一种新型溶瘤病毒oHSV2hGM-CSF,并与oHSV1hGM-CSF并行评估其在体外和体内的溶瘤活性。

方法

oHSV2hGM-CSF是一种基于HG52病毒(一种HSV2毒株)的具有复制能力的减毒HSV2。通过缺失病毒基因ICP34.5和ICP47并插入编码hGM-CSF的基因,使其对癌症具有特异性。为了测量病毒的体外杀伤效果,将15种人类肿瘤细胞系(HeLa、Eca-109、PG、HepG2、SK/FU、CNE-2Z、PC-3、SK-OV3、A-549、786-0、MCF-7、Hep-2、HT-29、SK-Mel-28、U87-MG)和小鼠黑色素瘤(B16R)细胞系接种到24孔板中,以感染复数(MOI)=1感染病毒,或不进行感染。在感染后24小时和48小时收获细胞,并在显微镜下观察。对于动物研究,当肿瘤体积达到7-8立方毫米时,以2.3×10⁶噬斑形成单位(PFU)的剂量瘤内注射(间隔3天)溶瘤病毒,共注射三次。每隔3天测量肿瘤体积并记录动物存活情况。

结果

oHSV2hCM-CSF和oHSV1hGM-CSF在感染后24小时均诱导了广泛的细胞病变效应。相比之下,oHSV2hGM-CSF产生的具有多核细胞表型的噬斑比oHSV1hGM-CSF更多。在对HeLa、HepG2、SK-Mel-28、B16R和U87-MG细胞系的体外杀伤实验中,在相同条件下,oHSV2hGM-CSF比oHSV1hGM-CSF清除的细胞明显更多。对于小鼠实验,观察到oHSV2hGM-CSF显著抑制肿瘤生长。在接种B16R肿瘤细胞15天后,PBS组、oHSV1hGCM-CSF组和oHSV2hGM-CSF组的肿瘤体积分别为(374.7±128.24)立方毫米、(128.23±45.32)立方毫米(与PBS组相比,P<0.05)或(10.06±5.1)立方毫米(与PBS组相比,P<0.01)(平均值±误差)。通过记录接种肿瘤细胞后110天内的动物存活情况来评估oHSV2hGM-CSF对B16R动物模型的长期治疗效果,而PBS组的所有小鼠在第22天死亡(P<0.01)。新构建的oHSV2hGM-CSF对B16R细胞肿瘤的抗肿瘤机制似乎包括直接溶瘤活性和在一定程度上诱导抗肿瘤免疫。

结论

我们的研究结果表明,新构建的oHSV2hGM-CSF在体外对多种肿瘤细胞系具有强大的抗肿瘤活性,在体内对移植的B16R肿瘤模型也具有抗肿瘤活性。

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