a Division of Mucosal Immunology, Department of Microbiology and Immunology, Institute of Medical Science , University of Tokyo , Tokyo , Japan.
Biotechnol Genet Eng Rev. 2013;29:61-72. doi: 10.1080/02648725.2013.801226.
Nasal vaccination is considered a potent and practical immunization route for the induction of effective immunity to infectious diseases. Successful nasal vaccines require efficient delivery to, and retention of antigens within, nasal mucosa, including both the inductive (e.g., nasopharynx-associated lymphoid tissues) and effector (e.g., turbinate covered with single-layer epithelium) tissues, where antigen-specific immune responses are initiated and executed, respectively. We developed an approach towards successful nasal vaccination by using self-assembled nano-sized hydrogel particles, known as nanogels, which are composed of a cationic type of cholesteryl group-bearing pullulan. Here, we review the merging of nanotechnological and immunological concepts leading to the development of next-generation nasal vaccines, and demonstrate the applicability of novel nanogel-based vaccine for the prevention of infectious diseases.
鼻腔接种被认为是诱导针对传染病有效免疫的一种有效且实用的免疫途径。成功的鼻腔疫苗需要有效地递送到鼻腔黏膜,并在其中保留抗原,包括诱导(例如,鼻咽相关淋巴组织)和效应(例如,被单层上皮覆盖的鼻甲)组织,抗原特异性免疫反应分别在这些组织中启动和执行。我们通过使用自组装的纳米级水凝胶颗粒(称为纳米凝胶)开发了一种成功的鼻腔接种方法,该纳米凝胶由带阳离子型胆甾基的普鲁兰组成。在这里,我们综述了纳米技术和免疫学概念的融合,从而开发出新一代的鼻腔疫苗,并展示了新型基于纳米凝胶的疫苗在预防传染病方面的应用。