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冻融损伤的 AlhydrogelTM 的物理化学变化。

Physical and chemical changes in Alhydrogel™ damaged by freezing.

机构信息

National Institute of Public Health - National Institute of Hygiene, Department of Sera and Vaccines Evaluation, Warsaw, Poland.

Extensio et Progressio, Vice President, Geneva, Switzerland(1).

出版信息

Vaccine. 2018 Nov 12;36(46):6902-6910. doi: 10.1016/j.vaccine.2018.10.023. Epub 2018 Oct 12.

Abstract

Accidental freezing of aluminum-based vaccines occurs during their storage and transportation, in both developed and developing countries. Freezing damages the freeze-sensitive aluminum adjuvanted vaccines, through separation of lattice between aluminum adjuvant and antigen, leading to formation of aluminum aggregates, and loss of potency. In this study, we examined Alhydrogel™ ([AlO(OH)]xnHO, aluminum hydroxide, hydrated for adsorption) stored under recommended conditions, and exposed to freezing temperature until solid-frozen. The main purpose of our research was to determine the destruction areas of the solid-frozen Alhydrogel™ using selected methods of scanning electron microscopy, energy dispersive X-ray spectroscopy, Raman spectroscopy, Fourier-transform infrared spectroscopy and transmission electron microscopy working in diffraction mode. The Zeta potential evaluation, measurements of albumin adsorption power, thermogravimetric analysis and estimation of the mass loss after drying indicated significant structural (physical) and chemical differences between the freeze-damaged and non-frozen vaccine adjuvant. The presented results are important to better understand the type and nature of damages occurring in freeze-damaged aluminum-based vaccines. These results can be used in future studies to improve the temperature stability of aluminum adjuvanted vaccines.

摘要

在发达国家和发展中国家,铝基疫苗在储存和运输过程中都可能意外冻结。冻结会破坏对冷冻敏感的含铝佐剂疫苗,导致铝佐剂和抗原之间晶格分离,形成铝聚集体,并降低效力。在这项研究中,我们检查了在推荐条件下储存并暴露于冷冻温度直至完全冻结的 Alhydrogel™([AlO(OH)]xnHO,氢氧化铝,用于吸附水合)。我们研究的主要目的是使用扫描电子显微镜、能量色散 X 射线光谱、拉曼光谱、傅里叶变换红外光谱和工作在衍射模式下的透射电子显微镜等选定方法,确定完全冻结的 Alhydrogel™ 的破坏区域。Zeta 电位评估、白蛋白吸附力测量、热重分析和干燥后质量损失估计表明,冷冻损伤和未冷冻疫苗佐剂之间存在显著的结构(物理)和化学差异。所呈现的结果对于更好地理解冷冻损伤的铝基疫苗中发生的损伤类型和性质很重要。这些结果可用于未来的研究,以提高含铝佐剂疫苗的温度稳定性。

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