Nanoscale · 2011 · 127 citations · 21 references
Cationic liposomes have emerged as a novel adjuvant and antigen delivery system to enhance vaccine efficacy. However, the role of surface charge density in cationic liposome-regulated immune responses has not yet been elucidated. In the present study, we prepared a series of DOTAP/DOPC cationic liposomes with different surface densities by incorporating varying amounts of DOPC (a neutral lipid) into DOTAP (a cationic lipid). The results showed that DOTAP/DOPC cationic liposome-regulated immune responses relied on the surface charge density, and might occur through ROS signaling. The liposomes with a relatively high charge density, such as DOTAP/DOPC 5:0 and 4:1 liposomes, potently enhanced dendritic cell maturation, ROS generaion, antigen uptake, as well as the production of OVA-specific IgG2a and IFN-γ. In contrast, low-charge liposomes, such as DOTAP/DOPC 1:4 liposome, failed to promote immune responses even at high concentrations, confirming that the immunoregulatory effect of cationic liposomes is mostly attributable to their surface charge density. Moreover, the DOTAP/DOPC 1:4 liposome suppressed anti-OVA antibody responses in vivo. Overall, maintaining an appropriate surface charge is crucial for optimizing the adjuvant effect of cationic liposomes and enhancing the efficacy of liposome-based vaccines.
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James M. Brewer, Margaret Conacher, Christopher A. Hunter et al. · The Journal of Immunology · 1999 · 430 citations · Full text
Aluminium Hydroxide Adjuvant, Il-13-mediated Signaling, Immunology +16
The adjuvant mechanism of cationic dimethyldioctadecylammonium liposomes
Karen Smith Korsholm, Else Marie Agger, Camilla Foged et al. · Immunology · 2007 · 184 citations · Full text
Immunostimulation of dendritic cells by cationic liposomes
Padinjarae Vangasseri Dileep, Zhengrong Cui, Weihsu Chen et al. · Molecular Membrane Biology · 2006 · 181 citations · Full text