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Development of nano-carriers for Leishmania vaccine delivery

机译:Leishmania疫苗递送纳米载体的开发

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Introduction: Leishmaniasis is a neglected tropical infection caused by several species of intracellular protozoan parasites of the genus Leishmania. It is strongly believed that the development of vaccines is the most appropriate approach to control leishmaniasis. However, there is no vaccine available yet and the lack of an appropriate adjuvant delivery system is the main reason. Areas covered: Adjuvants are the utmost important part of a vaccine, to induce the immune response in the right direction. Limitations and drawbacks of conventional adjuvants have been necessitated the development of novel particulate delivery systems as adjuvants to obtain desirable protection against infectious diseases such as leishmaniasis. This review focused on particulate adjuvants especially nanoparticles that are in use to develop vaccines against leishmaniasis. The list of adjuvants includes generally lipids-, polymers-, or mineral-based delivery systems that target antigens specifically to the site of action within the host's body and enhance immune responses. Expert opinion: Over the past few years, there has been an increasing interest in developing particulate adjuvants as alternatives to immunostimulatory types. The composition of nano-carriers and particularly the physicochemical properties of nanoparticles have great potential to overcome challenges posed to leishmaniasis vaccine developments.
机译:介绍:利什曼病是由Leishmania属的几种细胞内原生动物寄生虫引起的忽略热带感染。强烈据信,疫苗的发展是控制利什曼病的最合适的方法。但是,没有可用的疫苗,并且缺乏适当的佐剂交付系统是主要原因。覆盖区域:佐剂是疫苗的最重要部分,以促使正确方向的免疫应答。常规佐剂的局限性和缺点已经需要开发新的颗粒递送系统作为佐剂,以获得对LeishManiaisis等传染病等感染的理想保护。本综述专注于微粒佐剂,特别是用于开发对LeishManiaisis的疫苗的纳米颗粒。佐剂列表包括一般脂质 - ,聚合物或矿物的递送系统,其靶向抗原特异性促使宿主体内的作用部位,并增强免疫应答。专家意见:在过去几年中,在开发颗粒状佐剂作为免疫刺激类型的替代方案,越来越令人兴趣。纳米载体的组成,特别是纳米颗粒的物理化学特性具有巨大的潜力,克服对Leishmaniaisis疫苗发育的挑战。

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