Exploring the immunomodulatory properties of glucan particles in human primary cells
[Display omitted] •Glucan particles interact differently with immune cells based on particle size and chemical composition.•Glucan particles have the capacity to induce both phenotypic and functional maturation of DCs.•Dendritic cells matured by glucan particles can accelerate T cell proliferation.•...
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Veröffentlicht in: | International journal of pharmaceutics 2024-04, Vol.655, p.123996-123996, Article 123996 |
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Sprache: | eng |
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•Glucan particles interact differently with immune cells based on particle size and chemical composition.•Glucan particles have the capacity to induce both phenotypic and functional maturation of DCs.•Dendritic cells matured by glucan particles can accelerate T cell proliferation.•Glucan particles induce upregulation of Dectin-1 in monocytes.
The immunomodulatory properties of β-glucans have sparked interest among various medical fields. As vaccine adjuvants, glucan particles offer additional advantages as antigen delivery systems. This study reported the immunomodulatory properties of glucan particles with different size and chemical composition. The effect of glucan microparticles (GPs) and glucan nanoparticles (Glu 130 and 355 NPs) was evaluated on human immune cells. While GPs and Glu 355 NPs demonstrated substantial interaction with Dectin-1 receptor on monocytes, Glu 130 NPs exhibited reduced activation of this receptor. This observation was substantiated by blocking Dectin-1, resulting in inhibition of reactive oxygen species production induced by GPs and Glu 355 NPs. Notably, monocyte-derived dendritic cells (moDCs) stimulated by Glu 355 NPs exhibited phenotypic and functional maturation, essential for antigen cross-presentation. The immunomodulatory efficacy was investigated using an autologous mixed lymphocyte reaction (AMLR), resulting in considerable rates of lymphocyte proliferation and an intriguing profile of cytokine and chemokine release. Our findings highlight the importance of meticulously characterizing the size and chemical composition of β-glucan particles to draw accurate conclusions regarding their immunomodulatory activity. This in vitro model mimics the human cellular immune response, and the results obtained endorse the use of β-glucan-based delivery systems as future vaccine adjuvants. |
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ISSN: | 0378-5173 1873-3476 |
DOI: | 10.1016/j.ijpharm.2024.123996 |