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Nanoparticles in influenza subunit vaccine development: Immunogenicity enhancement

机译:流感亚单位疫苗开发中的纳米颗粒:增强免疫原性

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摘要

The threat of novel influenza infections has sparked research efforts to develop subunit vaccines that can induce a more broadly protective immunity by targeting selected regions of the virus. In general, subunit vaccines are safer but may be less immunogenic than whole cell inactivated or live attenuated vaccines. Hence, novel adjuvants that boost immunogenicity are increasingly needed as we move toward the era of modern vaccines. In addition, targeting, delivery, and display of the selected antigens on the surface of professional antigen‐presenting cells are also important in vaccine design and development. The use of nanosized particles can be one of the strategies to enhance immunogenicity as they can be efficiently recognized by antigen‐presenting cells. They can act as both immunopotentiators and delivery system for the selected antigens. This review will discuss on the applications, advantages, limitations, and types of nanoparticles (NPs) used in the preparation of influenza subunit vaccine candidates to enhance humoral and cellular immune responses.
机译:新型流感感染的威胁引发了研究工作,以开发亚基疫苗,该亚基疫苗可通过靶向病毒的选定区域来诱导更广泛的保护性免疫。通常,亚单位疫苗比全细胞灭活或减毒活疫苗更安全,但免疫原性较低。因此,随着我们迈向现代疫苗时代,越来越需要增强免疫原性的新型佐剂。此外,在专业抗原呈递细胞表面上靶向,递送和展示所选抗原在疫苗设计和开发中也很重要。纳米颗粒的使用可以是增强免疫原性的策略之一,因为它们可以被抗原呈递细胞有效地识别。它们既可以充当所选抗原的免疫增强剂,又可以充当传递系统。这篇综述将讨论用于制备流感亚单位疫苗候选物以增强体液和细胞免疫反应的纳米颗粒(NPs)的应用,优势,局限和类型。

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