Issue 39, 2024

Synthesis of sulfated lactosyl glycosides for evaluation in vaccine adjuvant formulations

Abstract

Adjuvants are essential components of vaccines as they enable protection against multiple pathogens by enhancing the duration, magnitude and or quality of immune responses. SLA Archaeosomes, a type of liposome composed of sulfated lactosyl archaeol (SLA) glycolipids, are highly stable vaccine adjuvants that have been shown to induce strong immune responses in preclinical models of infectious disease and cancer. To better understand the mechanism of activity behind SLA archaeosomes strong immunogenic properties, we studied the effect of structural change on vaccine adjuvanticity. Herein, we report the synthesis of three new sulfated lactosyl glycosides (SLGs) by replacing the archaeol moiety with various side-chains. These derivatives were characterized using nuclear magnetic resonance, mass spectrometry, and thin layer chromatography for identity and purity assessment. The SLGs were co-assembled in the presence of DMPC and cholesterol to produce lipid vesicles. The abilities of the SLG-based liposomes to act as vaccine adjuvants were compared to SLA archaeosomes in an in vivo murine vaccine model.

Graphical abstract: Synthesis of sulfated lactosyl glycosides for evaluation in vaccine adjuvant formulations

Supplementary files

Article information

Article type
Paper
Submitted
03 Jul 2024
Accepted
12 Sep 2024
First published
25 Sep 2024
This article is Open Access
Creative Commons BY license

New J. Chem., 2024,48, 17192-17201

Synthesis of sulfated lactosyl glycosides for evaluation in vaccine adjuvant formulations

T. Sharma, S. Régnier, L. Deschatelets, F. C. Stark, V. Vasquez, C. F. Martinez-Farina, R. Dudani, B. A. Harrison, B. Akache, Y. Jia, M. J. McCluskie and U. D. Hemraz, New J. Chem., 2024, 48, 17192 DOI: 10.1039/D4NJ03019B

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