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结合在可生物降解微球中的儿童疟疾疫苗产生具有协同相互作用的免疫力。

Childhood and malaria vaccines combined in biodegradable microspheres produce immunity with synergistic interactions.

作者信息

Peyre Marisa, Audran Regine, Estevez Francisco, Corradin Giampietro, Gander Bruno, Sesardic Dorothea, Johansen Pål

机构信息

Division of Bacteriology, National Institute for Biological Standards and Controls, Blanche Lane, South Mimms, Potters Bar, Hertfordshire EN6 3QG, UK.

出版信息

J Control Release. 2004 Oct 19;99(3):345-55. doi: 10.1016/j.jconrel.2004.07.014.

Abstract

Biodegradable microspheres may represent a potential tool for the delivery of combination vaccines. We demonstrate strong immunogenicity of five co-encapsulated antigens after a single subcutaneous inoculation in guinea pigs. Tetanus- and diphtheria-specific antibodies were not significantly affected by the presence of either antigen or by the presence of pertussis or Haemophilus influenzae type b (Hib) antigens. Microsphere formulations gave better protection against diphtheria toxin than did two injections of a licensed tetravalent vaccine. Finally, a synthetic malaria peptide antigen (PfCS) also encapsulated in PLGA microspheres increased diphtheria and tetanus-specific immunity and improved protection against diphtheria. These findings demonstrate the potential of microspheres as an alternative and promising strategy for combination vaccines with a further aptitude in reducing the number of inoculations required to gain functional immunity.

摘要

可生物降解微球可能是一种用于联合疫苗递送的潜在工具。我们证明了在豚鼠单次皮下接种后,五种共包封抗原具有强大的免疫原性。破伤风和白喉特异性抗体不受任何一种抗原的存在或百日咳或b型流感嗜血杆菌(Hib)抗原的存在的显著影响。微球制剂比两次注射许可的四价疫苗对白喉毒素提供了更好的保护。最后,同样封装在聚乳酸-羟基乙酸共聚物(PLGA)微球中的合成疟疾肽抗原(PfCS)增强了白喉和破伤风特异性免疫,并改善了对白喉的保护。这些发现证明了微球作为联合疫苗的一种替代且有前景的策略的潜力,并且在减少获得功能性免疫所需的接种次数方面还有进一步的能力。

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