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具有溶瘤活性的纳米荧光素酶表达塞内卡病毒 A 的拯救。

Rescue of NanoLuc luciferase-expressing Senecavirus A with oncolytic activity.

机构信息

College of Veterinary Medicine, Qingdao Agricultural University, Qingdao, 266109, China.

College of Veterinary Medicine, Qingdao Agricultural University, Qingdao, 266109, China.

出版信息

Virus Res. 2021 Jan 15;292:198232. doi: 10.1016/j.virusres.2020.198232. Epub 2020 Nov 15.

Abstract

Senecavirus A (SVA), previously known as Seneca Valley virus, is classified into the genus Senecavirus in the family Picornaviridae. SVA is not pathogenic to normal human cells, but has potent oncolytic activity in some tumor cells with neuroendocrine feature, such as small cell lung cancer (SCLC) NCI-H446 cell line. In this study, we rescued and characterized a recombinant SVA that could efficiently express a novel luciferase, NanoLuc® luciferase (NLuc), which was smaller and "brighter" than others. This NLuc-tagged recombinant SVA (rSVA-NLuc) exhibited high capacity for viral replication, but genetic instability of NLuc during serial virus passages. The NLuc as a reporter facilitated oncolytic analysis of rSVA-NLuc in H446 cells. The rSVA-NLuc-infected H446 cells exhibited an oncolytic phenotype characterized by cell rounding, swelling, detachment and lysis at 48 h post infection. Kinetic curve showed that the NLuc was rapidly expressed in H446 cells during an exponential phase of viral growth. Because the NLuc offered several advantages over fluorescent proteins for assay scalability in vivo, the rSVA-NLuc would play a potential role in facilitating in vivo imaging studies of oncolytic virotherapy.

摘要

塞内卡病毒 A(SVA),以前称为塞内卡谷病毒,被归类为小 RNA 病毒科肠道病毒属。SVA 对正常人类细胞无致病性,但对具有神经内分泌特征的某些肿瘤细胞(如小细胞肺癌 NCI-H446 细胞系)具有强大的溶瘤活性。在本研究中,我们拯救并鉴定了一种能够有效表达新型荧光素酶 NanoLuc® 荧光素酶(NLuc)的重组 SVA,其体积更小且“更亮”。这种标记有 NLuc 的重组 SVA(rSVA-NLuc)表现出高病毒复制能力,但在连续病毒传代过程中 NLuc 的遗传不稳定性。NLuc 作为报告基因,促进了 rSVA-NLuc 在 H446 细胞中的溶瘤分析。rSVA-NLuc 感染的 H446 细胞表现出溶瘤表型,特征为感染后 48 小时细胞圆化、肿胀、脱落和裂解。动力学曲线显示,在病毒生长的指数期,NLuc 在 H446 细胞中迅速表达。由于 NLuc 在体内检测的可扩展性方面优于荧光蛋白,因此 rSVA-NLuc 将在促进溶瘤病毒治疗的体内成像研究中发挥潜在作用。

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