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探索离子液体的生物活性及其开发新型疫苗佐剂的潜力。

Exploring the Biological Activities of Ionic Liquids and Their Potential to Develop Novel Vaccine Adjuvants.

作者信息

Akkineni Snehitha, Rawas-Qalaji Mutasem, Kouzi Samir A, Chbib Christiane, Uddin Mohammad N

机构信息

College of Pharmacy, Mercer University, Atlanta, GA 30341, USA.

College of Pharmacy, University of Sharjah, Sharjah 27272, United Arab Emirates.

出版信息

Vaccines (Basel). 2025 Mar 28;13(4):365. doi: 10.3390/vaccines13040365.

Abstract

Ionic liquids (ILs) are salts with poorly coordinated ions, allowing them to exist in a liquid phase below 100 °C or at room temperature. Therefore, they are best described as room temperature ionic liquids (RTILs). In ionic liquids, the presence of a delocalized charge in at least one ion, coupled with an organic component, inhibits the establishment of a stable solid crystal lattice. Due to their flexible properties and several distinctive characteristics, such as high ionic conductivity, high solvation power, thermal stability, low volatility, and recyclability, ILs have been extensively used in chemical industries. In addition to their various other applications, they also hold potential for drug formulation development. Ionic liquids can be used as solubility enhancers, permeability enhancers, stabilizers, targeted delivery inducers, stealth property providers, or bioavailability enhancers. Moreover, ILs hold significant potential in vaccine formulation. Many new vaccines are in the pipeline with different types of antigens; however, the existence of only a limited number of adjuvants hinder their potential use. Thus, developing new, highly effective, low-cost adjuvant preparations is a central interest among formulation scientists. With their unique properties and biological functions, ILs can be highly promising candidates for new types of vaccines.

摘要

离子液体(ILs)是由配位性差的离子构成的盐,这使得它们能够在100°C以下或室温下呈液相存在。因此,它们最好被描述为室温离子液体(RTILs)。在离子液体中,至少一个离子中存在离域电荷,再加上有机成分,会抑制稳定的固体晶格的形成。由于其灵活的性质和几个独特的特性,如高离子导电性、高溶剂化能力、热稳定性、低挥发性和可回收性,离子液体已在化学工业中得到广泛应用。除了它们的各种其他应用外,它们在药物制剂开发方面也具有潜力。离子液体可用作溶解度增强剂、渗透性增强剂、稳定剂、靶向递送诱导剂、隐身性能提供者或生物利用度增强剂。此外,离子液体在疫苗制剂方面具有巨大潜力。许多新型疫苗正在研发中,含有不同类型的抗原;然而,可用佐剂数量有限阻碍了它们的潜在应用。因此,开发新型、高效、低成本的佐剂制剂是制剂科学家们的核心关注点。凭借其独特的性质和生物学功能,离子液体可能成为新型疫苗的极具潜力的候选物。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f78c/12031513/a4081e5bf249/vaccines-13-00365-g001.jpg

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