β-glucans, a group of polysaccharides exist in many organism species such as mushrooms, yeasts, oats, barley, seaweed, but not mammalians, have a variety of biological activities and applications in drugs and other healthcare products. In recent years, β-glucans have been studied as adjuvants in anti-infection vaccines as well as immunomodulators in anti-cancer immunotherapy. β-glucans can regulate immune responses when administered alone and can connect innate and adaptive immunity to improve immunogenicity of vaccines. When β-glucans act as immunostimulants or adjuvants, a set of receptors have been revealed to recognize β-glucans, including dectin-1, complement receptor 3 (CR3), CD5, lactosylceramide, and so on. Therefore, this review is mainly focused on the application of β-glucans as immune adjuvants, the receptors of β-glucans, as well as their structure and activity relationship which will benefit future research of β-glucans.
This 2018 review in Vaccine evaluated β-glucans as potential immunoadjuvants — agents that enhance vaccine immune responses when co-administered with antigens.
β-glucans show strong potential as vaccine adjuvants, capable of enhancing both humoral and cellular immune responses. By activating innate immune cells (macrophages, dendritic cells), β-glucans prime the immune system to mount stronger adaptive responses to co-administered antigens. This adjuvant effect is mediated through Dectin-1 and complement receptor pathways.
Adjuvant properties of β-glucan extend its therapeutic utility beyond supplementation. Aureobasidium pullulans β-glucan's strong innate immune priming activity suggests potential as a natural vaccine adjuvant, opening new application avenues.
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Jin Y., Li P., Wang F.. β-glucans as potential immunoadjuvants: A review on the adjuvanticity, structure-activity relationship and receptor recognition properties. Vaccine. 2018. DOI: 10.1016/j.vaccine.2018.07.038.
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