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恶性疟原虫疟疾疫苗:现状、困境和未来方向。

Plasmodium falciparum malaria vaccines: current status, pitfalls and future directions.

机构信息

NanoBioCel Group, Laboratory of Pharmaceutics, University of the Basque Country, School of Pharmacy, Paseo de la Universidad, Vitoria, Spain.

出版信息

Expert Rev Vaccines. 2012 Sep;11(9):1071-86. doi: 10.1586/erv.12.87.

Abstract

Currently, a vaccine against malaria has not yet been licensed. Different approaches have been explored with different immune responses, but neither has fulfilled the criteria for being approved. The most advanced candidate, RTS,S, is undergoing Phase III studies and comprises virus-like particles, liposomes and immunostimulatory molecules. Other strategies are based on the use of polymeric particles, viral vectors or virosomes. Here, the authors have summarized the clinical advances that have been made in the field of Plasmodium falciparum to date, since it is the main causal agent of severe malaria. The best strategies to further develop a vaccine against malaria have also been discussed. In fact, an appropriate formulation should be immunogenic, safe and well tolerated, and as far as possible, avoid the use of needles and require a low number of immunizations. Moreover, issues such as storage, costs and so on, have to be taken into account.

摘要

目前,尚未有获得许可的疟疾疫苗。人们已经探索了不同的方法,这些方法产生了不同的免疫反应,但都没有达到批准的标准。最先进的候选疫苗 RTS,S 正在进行 III 期研究,包含类病毒颗粒、脂质体和免疫刺激分子。其他策略基于使用聚合颗粒、病毒载体或类病毒体。在这里,作者总结了迄今为止在恶性疟原虫领域取得的临床进展,因为它是严重疟疾的主要病原体。还讨论了进一步开发疟疾疫苗的最佳策略。事实上,一种合适的疫苗配方应该具有免疫原性、安全性和良好的耐受性,并且尽可能避免使用针剂,需要的免疫接种次数也应尽量少。此外,还必须考虑储存、成本等问题。

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