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利什曼病:聚焦于纳米颗粒疫苗传递系统的设计。

Leishmaniasis: focus on the design of nanoparticulate vaccine delivery systems.

机构信息

Quality Control Department, Research and Production Complex, Pasteur Institute of Iran, Tehran, Iran.

出版信息

Expert Rev Vaccines. 2012 Jan;11(1):69-86. doi: 10.1586/erv.11.166.

Abstract

Although mass vaccination of the entire population of an endemic area would be the most cost-effective tool to diminish Leishmania burden, an effective vaccine is not yet commercially available. Practically, vaccines have failed to achieve the required level of protection, possibly owing to the lack of an appropriate adjuvant and/or delivery system. Therefore, there is still an imperative demand for an improved, safe and efficient delivery system to enhance the immunogenicity of available vaccine candidates. Nanoparticles are proficient in boosting the quality and magnitude of immune responses in a predictable fashion. Herein, we discuss how nanoparticulate vaccine delivery systems can be used to induce appropriate immune responses against leishmaniasis by controlling physicochemical properties of the vaccine. Stability, production reproducibility, low cost per dose and low risk-benefit ratios are desirable characteristics of an ideal vaccine formulation and solid lipid nanoparticles may serve as one of the most promising practical strategies to help to achieve such a leishmanial vaccine, at least in canine species in the developing world.

摘要

虽然对流行地区的全部人口进行大规模疫苗接种将是减少利什曼病负担最具成本效益的工具,但有效的疫苗尚未在商业上获得应用。实际上,疫苗未能达到所需的保护水平,这可能是由于缺乏适当的佐剂和/或传递系统。因此,仍然迫切需要改进、安全和有效的传递系统,以提高现有疫苗候选物的免疫原性。纳米颗粒在以可预测的方式增强免疫反应的质量和数量方面非常有效。在此,我们讨论了如何通过控制疫苗的物理化学性质,利用纳米颗粒疫苗传递系统来诱导针对利什曼病的适当免疫反应。稳定性、生产重现性、每剂量成本低和风险效益比低是理想疫苗配方的理想特征,固体脂质纳米颗粒可能成为最有前途的实用策略之一,有助于实现这种利什曼病疫苗,至少在发展中国家的犬种中是这样。

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