Solvent free production of liposomes as a vaccine adjuvant with a comparative study of different cationic surfactants
Khalifa, Al Zahraa and Perrie, Yvonne and Shahiwala, Aliasgar (2025) Solvent free production of liposomes as a vaccine adjuvant with a comparative study of different cationic surfactants. International Journal of Pharmaceutics, 676. 125606. ISSN 1873-3476 (https://doi.org/10.1016/j.ijpharm.2025.125606)
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Abstract
Liposomes are well known vaccine adjuvants, that could associate with different subunit antigens by several mechanisms to enhance their immunogenicity. However, the adjuvant effect of liposomes differs with varying their physicochemical properties, necessitating the optimisation of formulation parameters to achieve the desired adjuvant effect and immune response. Initial studies focused on optimizing the production of DSPC and cholesterol liposomes using the solvent-free powder hydration method, followed by size reduction via sonication. A 3 × 4 × 9 factorial design, comprising 108 different trials in triplicates, was set to study the influence of key factors involved in the preparation process, including the homogenizer speed, stirring time, and sonication time. The desired size and PDI were achieved by setting the optimized process factors. The model antigen, OVA was loaded into the optimised liposomes which were then purified through an optimized dialysis process. Additional formulation factors were adjusted to maximize loading efficiency, including the concentration of the cationic surfactant, antigen concentration, liposome-to-antigen volume ratio, and the application of lyophilization. Since cationic liposomes are known to be the most immunogenic, a comparative study was conducted using different cationic surfactants, DODAB, HTAB, DTAC, and DHDAB, across various surfactant-to-lipid ratios. The resulting cationic liposomes were evaluated for their physicochemical properties, loading efficiency, drug release profiles, kinetic models, and stability.
ORCID iDs
Khalifa, Al Zahraa, Perrie, Yvonne
ORCID: https://orcid.org/0000-0001-8497-2541 and Shahiwala, Aliasgar;
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Item type: Article ID code: 93084 Dates: DateEvent15 May 2025Published17 April 2025Published Online15 April 2025Accepted4 February 2025SubmittedSubjects: Medicine > Pharmacy and materia medica Department: Faculty of Science > Strathclyde Institute of Pharmacy and Biomedical Sciences Depositing user: Pure Administrator Date deposited: 11 Jun 2025 09:26 Last modified: 13 Aug 2026 00:19 Related URLs: URI: https://strathprints.strath.ac.uk/id/eprint/93084
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