Drug Delivery Research Laboratory, Department of Pharmaceutical Sciences, Dr. H. S. Gour Vishwavidyalaya, Sagar, M.P. 470003 India.
Biotechnol Adv. 2015 Jan-Feb;33(1):64-79. doi: 10.1016/j.biotechadv.2014.12.004. Epub 2014 Dec 12.
Mucosal sites serve as the main portal for the entry of pathogens and thus immunization through mucosal routes can greatly improve the immunity. Researchers are continuously exploring the vaccination strategies to engender protective mucosal immune responses. Unearthing of mucosal adjuvants, that are safe and effective, is enhancing the magnitude and quality of the protective immune response. Use of nanotechnology based polymeric nanocarrier systems which encapsulate vaccine components for protection of sensitive payload, incorporate mucosal adjuvants to maximize the immune responses and target the mucosal immune system is a key strategy to improve the effectiveness of mucosal vaccines. These advances promise to accelerate the development and testing of new mucosal vaccines against many human diseases. This review focuses on the need for the development of nanocarrier based mucosal vaccines with emphases on the polymeric nanoparticles, their clinical status and future perspectives. This review focuses on the need and new insights for the development of nanoarchitecture governed mucosal vaccination with emphases on the various polymeric nanoparticles, their clinical status and future perspectives.
黏膜部位是病原体进入的主要门户,因此通过黏膜途径进行免疫接种可以极大地提高免疫力。研究人员正在不断探索疫苗接种策略,以产生保护性黏膜免疫反应。安全有效的黏膜佐剂的发现,提高了保护性免疫反应的幅度和质量。使用基于纳米技术的聚合物纳米载体系统来封装疫苗成分以保护敏感有效负载,结合黏膜佐剂以最大限度地提高免疫反应并靶向黏膜免疫系统,是提高黏膜疫苗有效性的关键策略。这些进展有望加速针对许多人类疾病的新型黏膜疫苗的开发和测试。本文重点介绍了开发基于纳米载体的黏膜疫苗的必要性,并强调了聚合物纳米颗粒及其临床现状和未来前景。本文重点介绍了基于纳米结构控制的黏膜免疫接种的必要性和新见解,重点介绍了各种聚合物纳米颗粒及其临床现状和未来前景。
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