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HSVtk 和 IL-15Rα武装的痘苗病毒诱导系统性抗肿瘤免疫的协同溶瘤效应

英文原题:Synergistic Oncolytic Effect of HSVtk- and IL-15Rα-Armed Vaccinia Viruses Inducing Systemic Antitumor Immunity.

PubMed 2026/06/28(内容时间) Int J Mol Sci Q1 · IF 5.6(JCR 2025)

研究概要

这些数据表明,在溶瘤痘苗病毒平台中整合直接病毒细胞毒性、HSVtk/GCV介导的自杀基因治疗和IL-15通路靶向免疫调节,可以在严格的乳腺癌模型中提高抗肿瘤疗效。

中文摘要

溶瘤病毒疗法为实体瘤治疗提供了一条有前景的途径,但单药方案常因肿瘤裂解不充分和免疫激活不足而受到限制。在此我们报道,在鼠乳腺腺癌模型(4T1)中,联合使用两种重组溶瘤痘苗病毒变体——分别携带单纯疱疹病毒胸苷激酶(VV-HSVtk)或白细胞介素15受体α亚基(VV-mIL15Rα)——可增强细胞毒性和免疫刺激。在体外,VV-HSVtk表现出剂量依赖性细胞毒性,并因更昔洛韦(GCV)通过HSVtk介导的磷酸化转化为细胞毒性核苷类似物而显著增强,且将VV感染的肿瘤细胞与供体来源的NK细胞共培养进一步提高了溶瘤效率。在体内,与单药治疗对照相比,VV-HSVtk、VV-mIL15Rα和GCV联合治疗在4T1同基因小鼠中导致显著肿瘤消退并延长生存期。组织学检查显示肿瘤部位淋巴细胞浸润增加,且无肝或脾毒性。总之,这些数据表明,在溶瘤痘苗平台上整合直接病毒细胞毒性、HSVtk/GCV介导的自杀基因治疗和IL-15通路靶向免疫调节,可在严格的乳腺癌模型中提高抗肿瘤疗效。

展开英文摘要原文

Oncolytic virotherapy offers a promising avenue for solid tumor treatment, yet single-agent approaches are frequently limited by insufficient tumor lysis and inadequate immune activation. Here we report that combined therapy with two recombinant variants of the oncolytic vaccinia virus, armed with either herpes simplex virus thymidine kinase (VV-HSVtk) or the interleukin 15 receptor subunit alpha (VV-mIL15Rα), leads to enhanced cytotoxicity and immune stimulation in a murine mammary adenocarcinoma model (4T1). In vitro, VV-HSVtk exhibited dose-dependent cytotoxicity markedly potentiated by ganciclovir (GCV) through HSVtk-mediated phosphorylation into a cytotoxic nucleoside analog, and co-culture of VV-infected tumor cells with donor-derived NK cells further increased oncolytic efficiency. In vivo, combined treatment with VV-HSVtk, VV-mIL15Rα, and GCV resulted in significant tumor regression and extended survival relative to monotherapy controls in 4T1 syngeneic mice. Histological examination revealed increased lymphocytic infiltration at tumor sites and absence of hepatic or splenic toxicity. Together, these data indicate that integrating direct viral cytotoxicity, HSVtk/GCV-mediated suicide gene therapy, and IL-15-pathway-targeted immunomodulation within an oncolytic vaccinia platform can improve antitumor efficacy in a stringent breast cancer model.

论文信息

作者
Alekseeva ON、Vorobyev PO、Shakiba Y、Ionov SA、Antseva SS、Semenova AV、Valikhov MP、Kalsin VA
单位
Engelhard Institute of Molecular Biology, Russian Academy of Science, 119991 Moscow, Russia.Russia
期刊
International journal of molecular sciences2026 Jun 28
原文标识
PubMed 42450112 · DOI 10.3390/ijms27135838