环糊精在疫苗中的应用:增强效力和稳定性

Gamze Varan
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摘要

环糊精是一类环低聚糖,由于其独特的分子结构和用途广泛,在制药领域引起了广泛的关注。在疫苗方面,环糊精可以有效地包裹抗原,确保其免受降解并提高其免疫原性。环糊精通过防止不稳定的疫苗成分在储存和运输过程中的降解,为疫苗提供了稳定性优势。此外,环糊精可以作为佐剂,增强疫苗引发的免疫反应。它们独特的结构和与免疫系统的相互作用增强了免疫细胞对抗原的识别,从而改善了先天和适应性免疫反应的激活。这种佐剂作用有助于对目标病原体产生强大而持久的免疫保护。由于纳米颗粒固有的独特属性,将其整合到疫苗配方中已经承担了必不可少的作用。通过将疫苗抗原/佐剂包封在环糊精纳米颗粒内,可以显著提高疫苗的效力和稳定性。特别是,两亲性环糊精在没有表面活性剂或共溶剂的情况下通过自组装形成纳米颗粒的能力是其作为抗原载体系统应用的一个迷人的前景。综上所述,环糊精为提高疫苗的有效性和稳定性提供了一个很有前景的平台。它们包封抗原、稳定不稳定的疫苗成分和充当佐剂的能力表明,它们有可能彻底改变疫苗配方和递送。这一领域的进一步研究和开发将有助于将基于环糊精的疫苗技术转化为实际和有效的免疫战略,最终有利于全球健康和疾病预防。
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Cyclodextrin in Vaccines: Enhancing Efficacy and Stability
Cyclodextrins, a family of cyclic oligosaccharides, have received considerable interest in the field of pharmaceuticals due to their unique molecular structure and versatile properties. In the context of vaccines, cyclodextrins can effectively encapsulate antigens, ensuring their protection from degradation and improving their immunogenicity. Cyclodextrins offer stability advantages to vaccines by preventing the degradation of labile vaccine components during storage and transportation. Furthermore, cyclodextrins can serve as adjuvants, potentiating the immune response triggered by vaccines. Their unique structure and interaction with the immune system enhance the recognition of antigens by immune cells, leading to an improved activation of both innate and adaptive immune responses. This adjuvant effect contributes to the development of robust and long-lasting immune protection against targeted pathogens. Owing to the distinctive attributes inherent to nanoparticles, their integration into vaccine formulations has assumed an imperative role. Through the encapsulation of vaccine antigens/adjuvants within cyclodextrin nanoparticles, the potency and stability of vaccines can be notably enhanced. In particular, the capacity of amphiphilic cyclodextrins to form nanoparticles through self-assembly without surfactants or co-solvents is a captivating prospect for their application as carrier systems for antigens. In conclusion, cyclodextrins present a promising platform for enhancing the efficacy and stability of vaccines. Their ability to encapsulate antigens, stabilize labile vaccine components and act as adjuvants demonstrates their potential to revolutionize vaccine formulation and delivery. Further research and development in this field will facilitate the translation of cyclodextrin-based vaccine technologies into practical and impactful immunization strategies, ultimately benefiting global health and disease prevention.
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