Virology and Vaccine Immunology, Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Protein Dynamics, Faculty of Medicine and Health Technology, Tampere University, Tampere, Finland.
Sci Rep. 2024 Jun 27;14(1):14874. doi: 10.1038/s41598-024-65316-6.
Insect cells have long been the main expression host of many virus-like particles (VLP). VLPs resemble the respective viruses but are non-infectious. They are important in vaccine development and serve as safe model systems in virus research. Commonly, baculovirus expression vector system (BEVS) is used for VLP production. Here, we present an alternative, plasmid-based system for VLP expression, which offers distinct advantages: in contrast to BEVS, it avoids contamination by baculoviral particles and proteins, can maintain cell viability over the whole process, production of alphanodaviral particles will not be induced, and optimization of expression vectors and their ratios is simple. We compared the production of noro-, rota- and entero-VLP in the plasmid-based system to the standard process in BEVS. For noro- and entero-VLPs, similar yields could be achieved, whereas production of rota-VLP requires some further optimization. Nevertheless, in all cases, particles were formed, the expression process was simplified compared to BEVS and potential for the plasmid-based system was validated. This study demonstrates that plasmid-based transfection offers a viable option for production of noro-, rota- and entero-VLPs in insect cells.
昆虫细胞长期以来一直是许多类病毒颗粒 (VLP) 的主要表达宿主。VLPs 类似于各自的病毒,但没有感染性。它们在疫苗开发中很重要,并作为病毒研究中的安全模型系统。通常,杆状病毒表达载体系统 (BEVS) 用于 VLP 的生产。在这里,我们提出了一种替代的基于质粒的 VLP 表达系统,它具有明显的优势:与 BEVS 相比,它避免了杆状病毒颗粒和蛋白质的污染,可以在整个过程中保持细胞活力,不会诱导α-诺达病毒颗粒的产生,并且表达载体及其比例的优化很简单。我们比较了基于质粒的系统和 BEVS 中标准工艺生产的诺如、轮状和肠 VLP。对于诺如和肠 VLP,可以达到相似的产量,而轮状 VLP 的生产需要进一步优化。尽管如此,在所有情况下,都形成了颗粒,与 BEVS 相比,表达过程得到了简化,并且验证了基于质粒的系统的潜力。本研究表明,基于质粒的转染为昆虫细胞中诺如、轮状和肠 VLP 的生产提供了一种可行的选择。