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An Overview on the Field of Micro- and Nanotechnologies for Synthetic Peptide-Based Vaccines

机译:合成肽基疫苗的微技术和纳米技术领域概述

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The development of synthetic peptide-based vaccines has many advantages in comparison with vaccines based on live attenuated organisms, inactivated or killed organism, or toxins. Peptide-based vaccines cannot revert to a virulent form, allow a better conservation, and are produced more easily and safely. However, they generate a weaker immune response than other vaccines, and the inclusion of adjuvants and/or the use of vaccine delivery systems is almost always needed. Among vaccine delivery systems, micro- and nanoparticulated ones are attractive, because their particulate nature can increase cross-presentation of the peptide. In addition, they can be passively or actively targeted to antigen presenting cells. Furthermore, particulate adjuvants are able to directly activate innate immune systemin vivo. Here, we summarize micro- and nanoparticulated vaccine delivery systems used in the field of synthetic peptide-based vaccines as well as strategies to increase their immunogenicity.
机译:与基于减毒活生物体,灭活或杀死的生物体或毒素的疫苗相比,基于合成肽的疫苗的开发具有许多优势。基于肽的疫苗不能还原为强毒形式,可以更好地保存,并且更容易,更安全地生产。但是,它们产生的免疫应答比其他疫苗弱,因此几乎总是需要包含佐剂和/或使用疫苗输送系统。在疫苗输送系统中,微颗粒和纳米颗粒的系统很有吸引力,因为它们的颗粒性质会增加肽的交叉展示。另外,它们可以被动地或主动地靶向抗原呈递细胞。此外,颗粒状佐剂能够在体内直接激活先天免疫系统。在这里,我们总结了基于合成肽的疫苗领域中使用的微米级和纳米级疫苗递送系统,以及提高其免疫原性的策略。

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