Laboratorio de Ingenieria Genetica y Biologia Celular y Molecular, Area Virosis de Insectos, Instituto de Microbiologia Basica y Aplicada, Departamento de Ciencia y Tecnologia, Universidad Nacional de Quilmes, Buenos Aires, Argentina.
Laboratorio de Oncologia Molecular, Departamento de Ciencia y Tecnologia, Universidad Nacional de Quilmes, Buenos Aires, Argentina.
Curr Gene Ther. 2021;21(2):177-189. doi: 10.2174/1566523220999201217155945.
Baculoviruses are insect pathogens with important biotechnological applications that transcend their use as biological controllers of agricultural pests. One species, Autographa californica multiple nucleopolhyedrovirus (AcMNPV), has been extensively exploited as a molecular platform to produce recombinant proteins and as a delivery vector for genes in mammals because it can transduce a wide range of mammalian cells and tissues without replicating or producing progeny.
To investigate if the budded virions of Anticarsia gemmatalis multiple nucleopolhyedrovirus (AgMNPV) species has the same ability, the viral genome was modified by homologous recombination into susceptible insect cells to integrate reporter genes and then it was evaluated on mammalian cell lines in a comparative form with respect to equivalent viruses derived from AcMNPV. Besides, the replicative capacity of AgMNPV´s virions in mammals was determined.
The experiments carried out showed that the recombinant variant of AgMNPV transduces and support the expression of delivered genes but not replicates in mammalian cells.
Consequently, this insect pathogen is proposed as an alternative to non-infectious viruses in humans to explore new approaches in gene therapy and other applications based on the use of mammalian cells.
杆状病毒是具有重要生物技术应用的昆虫病原体,其应用超越了作为农业害虫生物控制剂的用途。一种名为 Autographa californica 多粒核型多角体病毒(AcMNPV)的物种已被广泛用作生产重组蛋白的分子平台,也被用作哺乳动物的基因传递载体,因为它可以转导广泛的哺乳动物细胞和组织,而无需复制或产生后代。
为了研究 Anticarsia gemmatalis 多粒核型多角体病毒(AgMNPV)种的出芽病毒粒子是否具有相同的能力,通过同源重组将病毒基因组修饰为易感昆虫细胞,以整合报告基因,然后与源自 AcMNPV 的等效病毒进行比较形式评估。此外,还确定了 AgMNPV 病毒粒子在哺乳动物中的复制能力。
进行的实验表明,AgMNPV 的重组变体可以转导并支持所提供基因的表达,但不会在哺乳动物细胞中复制。
因此,建议将这种昆虫病原体作为非感染性病毒在人类中的替代物,以探索基于使用哺乳动物细胞的基因治疗和其他应用的新方法。