Innovative design and comprehensive characterization of a valine-enhanced lipid nanoparticle-coated mRNA vaccine targeting the SARS-CoV-2 S-RBD antigen

信使核糖核酸 生物信息学 化学 基因表达 生物 基因 分子生物学 核糖核酸 抗原 缬氨酸 细胞毒性 体外 脂质双层 分子质量 多核苷酸 肽疫苗 细胞生物学 细胞培养
作者
Tuğçe Duran,Naci Çine,Mehmet Ali Karaselek,Nadir Gül,Serkan Küççüktürk,Durmuş Hatipoğlu,Mehmet Burak Ateş,Ümran Çalışkan,Nadir Koçak
出处
期刊:Scientific Reports [Nature Portfolio]
卷期号:15 (1): 33898-33898 被引量:1
标识
DOI:10.1038/s41598-025-08142-8
摘要

The SARS-CoV-2 pandemic has led to major advances in mRNA vaccine development. This study aimed to develop a cationic lipid nanoparticle (LNP) coated mRNA vaccine targeting the receptor binding domain (RBD) against the SARS-CoV-2 virus and adding valine to the N-terminal end to increase its stability, and to comprehensively characterize the physical, thermal, microscopic and biological properties of vaccine. The vaccine was designed in silico and valine-added S-RBD molecule was generated by IVT. The LNP coated mRNA vaccine was evaluated by spectroscopic (UV-vis, FT-IR, Raman), thermodynamic (TGA/DSC), microscopic (STEM, AFM), size/potential (DLS) and surface tension analysis methods. The developed vaccine was analyzed for cytotoxicity (MTT) and pro/anti-inflammatory gene expression (qPCR). Spectroscopic analyses revealed distinct RNA and lipid peaks. Thermodynamic analyses revealed complete mass loss for mRNA and LNP at 136.2 °C and 85.7 °C, respectively. STEM analysis revealed that mRNA was uniformly coated with LNP, and its size was < 100 nm, and Ra/Rz values were 26.56/34.29 nm, respectively. Zeta potentials ranged from 0 to - 30 mV, and surface tensions were 33.8-38.0 mN/m, respectively. MTT analysis showed that the vaccine was not cytotoxic. qPCR analysis, significant increases were detected in IFNA1, IFNB1 and TNF gene expressions, but no significant increase was detected in IL6. Bioinformatic analyses revealed increased stability in mRNA structure and more robust pseudoknot formations after valine addition. Our study is the first study in which a uniquely designed valine-added mRNA vaccine coated with LNP targeting the RBD antigen of SARS-CoV-2 was developed and comprehensively characterized.
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