兽用疫苗中不同类型佐剂和纳米佐剂的免疫原性:综述

Immunogenicity of Different Types of Adjuvants and Nano-Adjuvants in Veterinary Vaccines: A Comprehensive Review.

作者信息

Nooraei Soren, Sarkar Lotfabadi Alireza, Akbarzadehmoallemkolaei Milad, Rezaei Nima

机构信息

Faculty of Veterinary Medicine, Shahrekord University, Shahrekord 8818634141, Iran.

Animal Model Integrated Network (AMIN), Universal Scientific Education and Research Network (USERN), Tehran 1419733151, Iran.

出版信息

Vaccines (Basel). 2023 Feb 16;11(2):453. doi: 10.3390/vaccines11020453.

Abstract

Vaccination is the best way to prevent and reduce the damage caused by infectious diseases in animals and humans. So, several vaccines are used for prophylactic purposes before the pathogen infects, while therapeutic vaccines strengthen the immune system after infection with the pathogen. Adjuvants are molecules, compounds, or macromolecules that enhance non-specific immunity and, in collaboration with antigen(s), can improve the body's immune responses and change the type of immune response. The potential and toxicity of adjuvants must be balanced to provide the safest stimulation with the fewest side effects. In order to overcome the limitations of adjuvants and the effective and controlled delivery of antigens, attention has been drawn to nano-carriers that can be a promising platform for better presenting and stimulating the immune system. Some studies show that nanoparticles have a more remarkable ability to act as adjuvants than microparticles. Because nano-adjuvants inactively target antigen-presenting cells (APCs) and change their chemical surface, nanoparticles also perform better in targeted antigen delivery because they cross biological barriers more easily. We collected and reviewed various types of nano-adjuvants with their specific roles in immunogenicity as a prominent strategy used in veterinary vaccines in this paper.

摘要

接种疫苗是预防和减少传染病对动物和人类造成损害的最佳方法。因此,在病原体感染之前,会使用几种疫苗进行预防,而治疗性疫苗则在病原体感染后增强免疫系统。佐剂是增强非特异性免疫的分子、化合物或大分子,与抗原协同作用时,可改善机体的免疫反应并改变免疫反应类型。必须平衡佐剂的潜力和毒性,以提供最安全的刺激且副作用最少。为了克服佐剂的局限性以及实现抗原的有效和可控递送,人们将注意力转向了纳米载体,纳米载体可能是更好地呈递和刺激免疫系统的有前景的平台。一些研究表明,纳米颗粒作为佐剂的能力比微粒更显著。由于纳米佐剂可被动靶向抗原呈递细胞(APC)并改变其化学表面,纳米颗粒在靶向抗原递送方面也表现得更好,因为它们更容易穿越生物屏障。在本文中,我们收集并综述了各种类型的纳米佐剂及其在免疫原性方面的特定作用,这是兽用疫苗中使用的一种突出策略。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/cc33/9962389/6aef5cd729f3/vaccines-11-00453-g001.jpg

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