Miele Chiara, Ramadan Dania, Lupacchini Leonardo, Marusic Carla, D'Argenio Valeria, Valente Maria Giovanna, Spila Antonella, Gessoni Gianluca, Alfano Veronica, Ferroni Patrizia, Donini Marcello, Guadagni Fiorella
Department for the Promotion of Human Sciences and Quality of Life, San Raffaele Roma Open University, 00166 Rome, Italy.
InterInstitutional Multidisciplinary Biobank (BioBIM), IRCCS San Raffaele, 00166 Roma, Italy.
Int J Mol Sci. 2025 May 8;26(10):4500. doi: 10.3390/ijms26104500.
The ongoing demand for reliable, cost-effective, and scalable diagnostic solutions during the COVID-19 pandemic emphasized the need for innovative production platforms. In this study, we present a plant-based molecular farming (PMF) strategy for the production of the receptor-binding domain (RBD) of the SARS-CoV-2 spike protein fused with an Fc region (RBDw-Fc). The RBDw-Fc antigen was transiently expressed in the plant, achieving high yields and purity. Its functionality was assessed through antigen-antibody binding assays. The purified antigen was subsequently employed in the development of a rapid diagnostic blot assay capable of screening plasma EDTA samples from pre- and post-vaccinated as well as pre- and post-infected individuals, demonstrating high sensitivity and specificity. Our results show that the RBDw-Fc-based assay is effective for SARS-CoV-2 detection and offers considerable advantages in terms of production speed, scalability, and cost efficiency compared to traditional systems, such as cell-culture-based production. The assay delivers accurate results in just a few minutes, making it particularly suitable for clinical and resource-limited settings. This study highlights the versatility of PMF as a platform for producing high-quality reagents, with promising applications beyond SARS-CoV-2 diagnostics. The RBDw-Fc antigen-based method provides a model for the rapid, economical, and flexible development of screening tools for emerging infectious diseases and future pandemics.
在新冠疫情期间,对可靠、经济高效且可扩展的诊断解决方案的持续需求凸显了创新生产平台的必要性。在本研究中,我们提出了一种基于植物的分子农场(PMF)策略,用于生产与Fc区域融合的严重急性呼吸综合征冠状病毒2(SARS-CoV-2)刺突蛋白受体结合域(RBDw-Fc)。RBDw-Fc抗原在植物中瞬时表达,实现了高产量和高纯度。通过抗原-抗体结合试验评估了其功能。随后,将纯化的抗原用于开发一种快速诊断印迹试验,该试验能够筛查接种疫苗前后以及感染前后个体的血浆乙二胺四乙酸(EDTA)样本,显示出高灵敏度和高特异性。我们的结果表明,基于RBDw-Fc的试验对SARS-CoV-2检测有效,并且与基于细胞培养的生产等传统系统相比,在生产速度、可扩展性和成本效益方面具有显著优势。该试验只需几分钟就能给出准确结果,使其特别适用于临床和资源有限的环境。本研究突出了PMF作为生产高质量试剂平台的多功能性,其应用前景不仅限于SARS-CoV-2诊断。基于RBDw-Fc抗原的方法为快速、经济且灵活地开发针对新发传染病和未来大流行的筛查工具提供了一个模型。