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首页> 外文期刊>International Journal of Pharmaceutics >NaCl strongly modifies the physicochemical properties of aluminum hydroxide vaccine adjuvants
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NaCl strongly modifies the physicochemical properties of aluminum hydroxide vaccine adjuvants

机译:NaCl强烈改变氢氧化铝疫苗佐剂的物理化学性质

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摘要

The immunostimulation capacity of most vaccines is enhanced through antigen adsorption on aluminum hydroxide (AH) adjuvants. Varying the adsorption conditions, i.e. pH and ionic strength (I), changes the antigen adsorbed amount and therefore the ability of the vaccine to stimulate the immune system. Vaccine formulations are thus resulting from an empirical screening of the adsorption conditions. This work aims at studying the physicochemical effects of adjusting the ionic strength of commercial AH adjuvant particles suspensions with sodium chloride (NaCI). X-ray photoelectron spectroscopy data show that AH particles surface chemical composition is neither altered by I adjustment with NaCI nor by deposition on gold surfaces. The latter result provides the opportunity to use AH-coated gold surfaces as a platform for advanced surface analysis of adjuvant particles, e.g. by atomic force microscopy (AFM). The morphology of adjuvant particles recovered from native and NaCI-treated AH suspensions, as studied by scanning electron microscopy and AFM, reveals that AH particles aggregation state is significantly altered by NaCI addition. This is further confirmed by nitrogen adsorption experiments: I adjustment to 150 mM with NaCI strongly promotes AH particles aggregation leading to a strong decrease of the developed specific surface area. This work thus evidences the effect of NaCI on AH adjuvant structure, which may lead to alteration of formulated vaccines and to misinterpretation of data related to antigen adsorption on adjuvant particles. (C) 2016 Elsevier B.V. All rights reserved.
机译:大多数疫苗的免疫刺激能力是通过抗原吸附在氢氧化铝(AH)的佐剂增强。改变吸附条件下,即pH和离子强度(I),改变了抗原吸附量,因此,疫苗的刺激免疫系统的能力。疫苗制剂因​​此从的吸附条件的经验筛选所得。这项工作的目的在于研究调整商业AH佐剂颗粒悬浮液用氯化钠(NaCl)中的离子强度的物理化学作用。 X射线光电子能谱法数据显示,AH颗粒表面化学组成既不是我调整用NaCl也不通过在金表面上沉积改变。后者的结果提供了使用AH-涂覆金表面作为佐剂颗粒的先进的表面分析的平台的机会,例如通过原子力显微镜(AFM)。佐剂颗粒的形态从天然和氯化钠处理的AH悬浮液中回收,如研究通过扫描电子显微镜和原子力显微镜,揭示了AH粒子聚集状态显著通过NaCl的另外改变。这是通过氮吸附实验进一步证实:我调整至150mM用NaCl强烈地促进AH颗粒聚集导致发达比表面积的强烈降低。因此,该工作能证明的NaCl上AH佐剂结构的影响,这可能会导致配制疫苗的改变,并与抗原吸附于佐剂颗粒数据的误解。 (c)2016 Elsevier B.v.保留所有权利。

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