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Veterinary vaccine nanotechnology: pulmonary and nasal delivery in livestock animals

机译:兽医疫苗纳米技术:畜牧动物中的肺部和鼻腔

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Veterinary vaccine development has several similarities with human vaccine development to improve the overall health and well-being of species. However, veterinary goals lean more toward feasible large-scale administration methods and low cost to high benefit immunization. Since the respiratory mucosa is easily accessible and most infectious agents begin their infection cycle at the mucosa, immunization through the respiratory route has been a highly attractive vaccine delivery strategy against infectious diseases. Additionally, vaccines administered via the respiratory mucosa could lower costs by removing the need of trained medical personnel, and lowering doses yet achieving similar or increased immune stimulation. The respiratory route often brings challenges in antigen delivery efficiency with enough potency to induce immunity. Nanoparticle (NP) technology has been shown to enhance immune activation by producing higher antibody titers and protection. Although specific mechanisms between NPs and biological membranes are still under investigation, physical parameters such as particle size and shape, as well as biological tissue distribution including mucociliary clearance influence the protection and delivery of antigens to the site of action and uptake by target cells. For respiratory delivery, various biomaterials such as mucoadhesive polymers, lipids, and polysaccharides have shown enhanced antibody production or protection in comparison to antigen alone. This review presents promising NPs administered via the nasal or pulmonary routes for veterinary applications specifically focusing on livestock animals including poultry.
机译:兽医疫苗开发有几种与人类疫苗开发的相似之处,以改善物种的整体健康和福祉。然而,兽医目标更加倾向于可行的大规模管理方法和低成本到高益处免疫。由于呼吸粘膜易于进入,并且大多数传染性药剂在粘膜开始发生感染循环,因此通过呼吸道途径免疫是对传染病的高度吸引力的疫苗输送策略。另外,通过呼吸道粘膜施用的疫苗可以通过去除训练有素的医务人员的需要来降低成本,降低剂量且达到类似或增加的免疫刺激。呼吸道途径通常会带来抗原输送效率的挑战,促使免疫力足够效力。已经显示纳米粒子(NP)技术通过产生更高的抗体滴度和保护来增强免疫活化。尽管NPS和生物膜之间的特异性机制仍在进行研究中,但诸如粒度和形状的物理参数,以及包括粘液间隙的生物组织分布影响抗原对靶细胞的作用部位和摄取的保护和输送。对于呼吸递送,与单独的抗原相比,各种生物材料如粘膜粘附聚合物,脂质和多糖如抗体产生或保护。本综述提供了通过鼻腔或肺线管理的承诺NPS,专门关注包括家禽在内的牲畜动物。

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