Vaccine and Infectious Disease Organization - International Vaccine Centre, University of Saskatchewan, Saskatoon, SK, Canada.
Vaccine. 2013 Jan 11;31(4):596-602. doi: 10.1016/j.vaccine.2012.11.067. Epub 2012 Dec 7.
The practice of immunization of animals and humans has been carried out for centuries and is generally accepted as the most cost effective and sustainable method of infectious disease control. Over the past 20 years there have been significant changes in our ability to produce antigens by conventional extraction and purification, recombinant DNA and synthesis. However, many of these products need to be combined with carrier molecules to generate optimal immune responses. This review covers selected topics in the development of carrier technologies for use in the veterinary vaccine field, including glycoconjugate and peptide vaccines, microparticle and nanoparticle formulations, and finally virus-like particles.
动物和人类的免疫接种实践已经进行了几个世纪,通常被认为是控制传染病最具成本效益和可持续的方法。在过去的 20 年中,我们通过传统提取和纯化、重组 DNA 和合成生产抗原的能力发生了重大变化。然而,这些产品中的许多都需要与载体分子结合,以产生最佳的免疫反应。本综述涵盖了兽医疫苗领域中载体技术发展的一些精选主题,包括糖缀合物和肽疫苗、微粒和纳米颗粒制剂,以及最后一类病毒样颗粒。