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Translating a Thin-Film Rehydration Method to Microfluidics for the Preparation of a SARS-CoV-2 DNA Vaccine: When Manufacturing Method Matters

Pharmaceutics. 2022-07; 
Allegra Peletta, Eakachai Prompetchara, Kittipan Tharakhet, Papatsara Kaewpang, Supranee Buranapraditkun, Nongnaphat Yostrerat, Suwimon Manopwisedjaroen, Arunee Thitithanyanont, Jonathan Avaro, Leonard Krupnik, Antonia Neels, Kiat Ruxrungtham, Chutitorn Ketloy, Gerrit Borchard
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Mammalian Expression … In brief, the gene-encoding cytoplasmic-deleted SARS-CoV-2 spike protein was optimized for human codon usage and synthesized by GenScript (Piscataway, NJ, USA). The gene was … Get A Quote

摘要

Previous investigations conducted on a liposomal formulation for a SARS-CoV-2 DNA vaccine manufactured using the thin-film layer rehydration method showed promising immunogenicity results in mice. The adaptation of the liposomal formulation to a scalable and reproducible method of manufacture is necessary to continue the investigation of this vaccine candidate. Microfluidics manufacture shows high potential in method translation. The physicochemical characterization of the blank liposomes produced by thin-film layer rehydration or microfluidics were shown to be comparable. However, a difference in lipid nanostructure in the bilayer resulted in a significant difference in the hydration of the thin-film liposomes... More

关键词

DNA vaccines, delivery systems, immunogenicity, liposomes, manufacturing method, microfluidics, structural differences, thin-film layer rehydration