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Improvement of DNA vaccination by adjuvants and sophisticated delivery devices: vaccine-platforms for the battle against infectious diseases

机译:通过佐剂和复杂的递送装置改善DNA疫苗接种:用于抵抗传染病的疫苗平台

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摘要

Advantages of DNA vaccination against infectious diseases over more classical immunization methods include the possibilities for rapid manufacture, fast adaptation to newly emerging pathogens and high stability at ambient temperatures. In addition, upon DNA immunization the antigen is produced by the cells of the vaccinated individual, which leads to activation of both cellular and humoral immune responses due to antigen presentation via MHC I and MHC II molecules. However, so far DNA vaccines have shown most efficient immunogenicity mainly in small rodent models, whereas in larger animals including humans there is still the need to improve effectiveness. This is mostly due to inefficient delivery of the DNA plasmid into cells and nuclei. Here, we discuss technologies used to overcome this problem, including physical means such as in vivo electroporation and co-administration of adjuvants. Several of these methods have already entered clinical testing in humans.
机译:相对于更经典的免疫方法,针对传染病的DNA疫苗接种的优势包括快速生产,快速适应新出现的病原体以及在环境温度下具有高稳定性的可能性。另外,在DNA免疫后,抗原由接种个体的细胞产生,由于抗原通过MHC I和MHC II分子呈递,导致细胞和体液免疫应答的激活。但是,到目前为止,DNA疫苗主要在小型啮齿动物模型中显示出最有效的免疫原性,而在包括人在内的较大动物中,仍然需要提高有效性。这主要是由于DNA质粒无法有效地传递到细胞和细胞核中。在这里,我们讨论用于克服此问题的技术,包括物理手段,如体内电穿孔和佐剂的共同给药。这些方法中的几种已经进入人体临床测试。

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