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首页> 外文期刊>Human vaccines >Advances in vaccines against neglected tropical diseases: Enhancing physical stability of a recombinant hookworm vaccine through biophysical and formulation studies
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Advances in vaccines against neglected tropical diseases: Enhancing physical stability of a recombinant hookworm vaccine through biophysical and formulation studies

机译:抗热带病疫苗的研究进展:通过生物物理和制剂研究提高重组钩虫疫苗的物理稳定性

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摘要

A bivalent recombinant vaccine for human hookworm disease is under development. One of the lead candidate antigens in the vaccine is a glutathione S-transferase cloned from the hookworm Necator americanus (Na-GST-1) which is expressed in the yeast Pichia pastoris. Based on preliminary studies demonstrating that the recombinant protein was not stable in an acetate buffer at pH 6, we undertook an extensive stability analysis of the molecule. To improve and optimize stability we complemented traditional methods employed for macromolecule and vaccine stabilization with biophysical techniques that were incorporated into a systematic process based on an eigenvector approach. Large data sets, obtained from a variety of experimental methods were used to establish a color map ("empirical phase diagram") of the physical stability of the vaccine antigen over a wide range of temperature and pH. The resulting map defined "apparent phase boundaries"that were used to develop high throughput screening assays. These assays were then employed to identify excipients that stabilized the antigen against physical degradation that could otherwise result in losses of physicochemical integrity, immunogenicity and potency of the vaccine. Based on these evaluations, the recombinant Na-GST-1 antigen was reformulated and ultimately produced under Good Manufacturing Practices and with an acceptable stability profile.
机译:用于人类钩虫病的二价重组疫苗正在开发中。疫苗中的一种主要候选抗原是从钩虫美洲轮虫(Na-GST-1)克隆的谷胱甘肽S-转移酶,该酶在巴斯德毕赤酵母中表达。根据初步研究表明重组蛋白在pH值为6的醋酸盐缓冲液中不稳定,我们对该分子进行了广泛的稳定性分析。为了改善和优化稳定性,我们用生物物理技术对用于高分子和疫苗稳定化的传统方法进行了补充,这些方法已整合到基于特征向量方法的系统过程中。从各种实验方法获得的大量数据用于建立疫苗抗原在较宽的温度和pH值范围内的物理稳定性的色图(“经验相图”)。所得图谱定义了“表观相界”,其用于开发高通量筛选测定。然后将这些测定法用于鉴定使抗原稳定以对抗物理降解的赋形剂,否则该赋形剂可能导致疫苗理化完整性,免疫原性和效力的丧失。基于这些评估,重组Na-GST-1抗原被重新配制,并最终按照良好生产规范生产并具有可接受的稳定性。

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