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Malaria transmission-blocking vaccines: wheat germ cell-free technology can accelerate vaccine development

机译:疟疾传输疫苗疫苗:小麦胚芽细胞的技术可以加速疫苗开发

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ABSTRACT Introduction: Highly effective malaria vaccines are essential component toward malaria elimination. Although the leading malaria vaccine, RTS,S/AS01, with modest efficacy is being evaluated in a pilot feasibility trial, development of a malaria transmission-blocking vaccine (TBV) could make a major contribution toward malaria elimination. Only a few TBV antigens have reached pre-clinical or clinical development but with several challenges including difficulties in the expression of malaria recombinant proteins and low immunogenicity in humans. Therefore, novel approaches to accelerate TBV research to preclinical development are critical to generate an efficacious TBV. Areas covered: PubMed was searched to review the progress and future prospects of malaria TBV research and development. We also reviewed registered trials at ClinicalTrials.gov as well as post-genome TBV candidate discovery research including our efforts. Expert opinion: Wheat germ cell-free protein synthesis technology can accelerate TBV development by overcoming some current challenges of TBV research.
机译:摘要介绍:高效的疟疾疫苗是疟疾消除的必要组成部分。虽然在先导可行性试验中评估了具有适度疗效的疟疾疫苗,RTS,S / AS01,疟疾传播疫苗(TBV)的发育可能对疟疾消除产生重大贡献。只有少量TBV抗原达到临床前或临床发展,但有几个挑战,包括疟疾重组蛋白和人类低免疫原性的困难。因此,将TBV研究加速到临床前发育的新方法对于产生有效的TBV至关重要。涵盖的地区:被搜查的Pubmed审查了疟疾TBV研发的进展和未来前景。我们还在Clinicaltrials.gov以及基因组TBV候选人发现研究中审查了注册试验,包括我们的努力。专家意见:通过克服TBV研究的一些目前挑战,可以加速TBV开发的小麦胚芽细胞蛋白质合成技术。

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