| Literature DB >> 24553259 |
Rebecca De Smet1, Liesbeth Allais1, Claude A Cuvelier1.
Abstract
Oral vaccination is the most challenging vaccination method due to the administration route. However, oral vaccination has socio-economic benefits and provides the possibility of stimulating both humoral and cellular immune responses at systemic and mucosal sites. Despite the advantages of oral vaccination, only a limited number of oral vaccines are currently approved for human use. During the last decade, extensive research regarding antigen-based oral vaccination methods have improved immunogenicity and induced desired immunological outcomes. Nevertheless, several factors such as the harsh gastro-intestinal environment and oral tolerance impede the clinical application of oral delivery systems. To date, human clinical trials investigating the efficacy of these systems are still lacking. This review addresses the rationale and key biological and physicochemical aspects of oral vaccine design and highlights the use of yeast-derived β-glucan microparticles as an oral vaccine delivery platform.Entities:
Keywords: GALT; Peyer’s patches; antigen delivery vehicles; microparticles; oral; vaccination; yeast-derived beta-glucan
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Year: 2014 PMID: 24553259 PMCID: PMC4896516 DOI: 10.4161/hv.28166
Source DB: PubMed Journal: Hum Vaccin Immunother ISSN: 2164-5515 Impact factor: 3.452