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Role of sustained antigen release from nanoparticle vaccines in shaping the T cell memory phenotype.

Biomaterials.. 2012-06; 
Demento SL, Cui W, Criscione JM, Stern E, Tulipan J, Kaech SM, Fahmy TM. Department of Biomedical Engineering, Yale University, New Haven, CT-06511, USA.
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Abstract

Particulate vaccines are emerging promising technologies for the creation of tunable prophylactics against a wide variety of conditions. Vesicular and solid biodegradable polymer platforms, exemplified by liposomes and polyesters, respectively, are two of the most ubiquitous platforms in vaccine delivery studies. Here we directly compared the efficacy of each in a long-term immunization study and in protection against a model bacterial antigen. Immunization with poly(lactide-co-glycolide) (PLGA) nanoparticles elicited prolonged antibody titers compared to liposomes and alum. The magnitude of the cellular immune response was also highest in mice vaccinated with PLGA, which also showed a higher frequency of effec... More

Keywords

Liposome; PLGA; Nanoparticle; Persistence; Vaccine; Memory T cells