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含铝佐剂的结构与性质

Structure and properties of aluminum-containing adjuvants.

作者信息

Hem S L, White J L

机构信息

Department of Industrial and Physical Pharmacy, Purdue University, West Lafayette, Indiana 47907, USA.

出版信息

Pharm Biotechnol. 1995;6:249-76. doi: 10.1007/978-1-4615-1823-5_9.

Abstract

This chapter is concerned with the identification, characterization, and behavior of aluminum-containing adjuvants with proteins and anions similar to those occurring in vaccines and interstitial fluid. Aluminum-containing adjuvants referred to commercially as aluminum hydroxide have been identified as poorly crystalline aluminum oxyhydroxide with the structure of the mineral boehmite. Relevant properties of this material include its high surface area and its high pI, which provide the adjuvant with a high adsorptive capacity for positively charged proteins. Aluminum phosphate and alum-precipitated adjuvants may be classified as amorphous aluminum hydroxyphosphate with little or no specifically adsorbed sulfate. Variations in the molar PO4/A1 ratio of amorphous aluminum hydroxyphosphates result in PI values that range from 5 up to 7; the materials are negatively charged at a physiological pH of 7.4. The amorphous nature of these compounds gives them high surface area and high protein adsorptive capacity for positively charged proteins. Observations on the interactions of anions and charged proteins with charged adjuvant surfaces have provided a framework for predicting behavior of complex systems of vaccines and for designing specific combinations of adjuvants and antigens to optimize the stability and efficacy of vaccines.

摘要

本章关注含铝佐剂与蛋白质及阴离子的识别、特性及相互作用,这些蛋白质和阴离子类似于疫苗及组织液中的成分。商业上称为氢氧化铝的含铝佐剂已被鉴定为结晶性较差的羟基氧化铝,其结构与矿物勃姆石相同。该材料的相关特性包括高表面积和高pI值,这使得佐剂对带正电荷的蛋白质具有高吸附能力。磷酸铝和明矾沉淀佐剂可归类为无定形羟基磷酸铝,几乎没有或没有特异性吸附的硫酸盐。无定形羟基磷酸铝的摩尔PO4/A1比值变化导致pI值范围从5到7;在生理pH值7.4时,这些材料带负电荷。这些化合物的无定形性质赋予它们高表面积以及对带正电荷蛋白质的高蛋白质吸附能力。关于阴离子和带电荷蛋白质与带电荷佐剂表面相互作用的观察结果,为预测复杂疫苗系统的行为以及设计佐剂和抗原的特定组合以优化疫苗的稳定性和效力提供了一个框架。

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