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通过添加甘露聚糖增强锌-肌肽配位聚合物的亚单位疫苗传递。

Enhancement of subunit vaccine delivery with zinc-carnosine coordination polymer through the addition of mannan.

机构信息

Division of Pharmacoengineering and Molecular Pharmaceutics, Eshelman School of Pharmacy, University of North Carolina at Chapel Hill, Chapel Hill, NC 27599, United States.

Joint Department of Biomedical Engineering, University of North Carolina at Chapel Hill and North Carolina State University, Chapel Hill, NC 27599, United States.

出版信息

Int J Pharm. 2024 May 10;656:124076. doi: 10.1016/j.ijpharm.2024.124076. Epub 2024 Apr 1.

Abstract

Vaccines represent a pivotal health advancement for preventing infection. However, because carrier systems with repeated administration can invoke carrier-targeted immune responses that diminish subsequent immune responses (e.g., PEG antibodies), there is a continual need to develop novel vaccine platforms. Zinc carnosine microparticles (ZnCar MPs), which are composed of a one-dimensional coordination polymer formed between carnosine and the metal ion zinc, have exhibited efficacy in inducing an immune response against influenza. However, ZnCar MPs' limited suspendability hinders clinical application. In this study, we address this issue by mixing mannan, a polysaccharide derived from yeast, with ZnCar MPs. We show that the addition of mannan increases the suspendability of this promising vaccine formulation. Additionally, since mannan is an adjuvant, we illustrate that the addition of mannan increases the antibody response and T cell response when mixed with ZnCar MPs. Mice vaccinated with mannan + OVA/ZnCar MPs had elevated serum IgG and IgG1 levels in comparison to vaccination without mannan. Moreover, in the mannan + OVA/ZnCar MPs vaccinated group, mucosal washes demonstrated increased IgG, IgG1, and IgG2c titers, and antigen recall assays showed enhanced IFN-γ production in response to MHC-I and MHC-II immunodominant peptide restimulation, compared to the vaccination without mannan. These findings suggest that the use of mannan mixed with ZnCar MPs holds potential for subunit vaccination and its improved suspendability further promotes clinical translation.

摘要

疫苗是预防感染的重要健康进步。然而,由于重复给药的载体系统会引起针对载体的免疫反应,从而降低后续的免疫反应(例如,PEG 抗体),因此需要不断开发新的疫苗平台。由肌肽和金属离子锌之间形成的一维配位聚合物组成的锌载体肌肽微粒(ZnCar MPs)已显示出在诱导针对流感的免疫反应方面的功效。然而,ZnCar MPs 的悬浮稳定性有限,阻碍了其临床应用。在这项研究中,我们通过将甘露聚糖(一种来自酵母的多糖)与 ZnCar MPs 混合来解决这个问题。我们表明,添加甘露聚糖可提高这种有前途的疫苗制剂的悬浮稳定性。此外,由于甘露聚糖是一种佐剂,我们表明,当与 ZnCar MPs 混合时,它可以增加抗体反应和 T 细胞反应。与未添加甘露聚糖的疫苗接种相比,用甘露聚糖+OVA/ZnCar MPs 接种的小鼠的血清 IgG 和 IgG1 水平升高。此外,在接种了甘露聚糖+OVA/ZnCar MPs 的组中,与未添加甘露聚糖的疫苗接种相比,粘膜冲洗显示 IgG、IgG1 和 IgG2c 滴度增加,抗原召回试验显示 MHC-I 和 MHC-II 免疫优势肽再刺激时 IFN-γ 产生增强。这些发现表明,使用与 ZnCar MPs 混合的甘露聚糖进行亚单位疫苗接种具有潜力,其提高的悬浮稳定性进一步促进了临床转化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/720c/11062752/fcce87ff59df/nihms-1985669-f0002.jpg

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