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重组三价轮状病毒亚单位候选疫苗:三种蛋白抗原的理化比较和稳定性评估。

Recombinant Subunit Rotavirus Trivalent Vaccine Candidate: Physicochemical Comparisons and Stability Evaluations of Three Protein Antigens.

机构信息

Department of Pharmaceutical Chemistry, Vaccine Analytics and Formulation Center, University of Kansas, Lawrence, Kansas 66047.

The Center for Vaccine Innovation and Access, PATH, Washington, District of Columbia 20001.

出版信息

J Pharm Sci. 2020 Jan;109(1):380-393. doi: 10.1016/j.xphs.2019.08.002. Epub 2019 Aug 7.

Abstract

Although live attenuated Rotavirus (RV) vaccines are available globally to provide protection against enteric RV disease, efficacy is substantially lower in low- to middle-income settings leading to interest in alternative vaccines. One promising candidate is a trivalent nonreplicating RV vaccine, comprising 3 truncated RV VP8 subunit proteins fused to the P2 CD4 epitope from tetanus toxin (P2-VP8-P[4/6/8]). A wide variety of analytical techniques were used to compare the physicochemical properties of these 3 recombinant fusion proteins. Various environmental stresses were used to evaluate antigen stability and elucidate degradation pathways. P2-VP8-P[4] and P2-VP8-P[6] displayed similar physical stability profiles as function of pH and temperature while P2-VP8-P[8] was relatively more stable. Forced degradation studies revealed similar chemical stability profiles with Met most susceptible to oxidation, the single Cys residue (at position 173/172) forming intermolecular disulfide bonds (P2-VP8-P[6] was most susceptible), and Asn undergoing the highest levels of deamidation. These results are visualized in a structural model of the nonreplicating RV antigens. The establishment of key structural attributes of each antigen, along with corresponding stability-indicating methods, have been applied to vaccine formulation development efforts (see companion paper), and will be utilized in future analytical comparability assessments.

摘要

虽然全球已有减毒活轮状病毒 (RV) 疫苗用于预防肠道 RV 疾病,但在中低收入国家,其效力明显较低,因此人们对替代疫苗产生了兴趣。一种有前途的候选疫苗是一种三价非复制 RV 疫苗,由 3 个截短的 RV VP8 亚单位蛋白与破伤风毒素的 P2 CD4 表位融合而成(P2-VP8-P[4/6/8])。使用了多种分析技术来比较这 3 种重组融合蛋白的理化特性。使用各种环境应激来评估抗原稳定性并阐明降解途径。P2-VP8-P[4]和 P2-VP8-P[6]在 pH 和温度的影响下表现出相似的物理稳定性,而 P2-VP8-P[8]则相对更稳定。强制降解研究显示出相似的化学稳定性,其中 Met 最易氧化,单个 Cys 残基(位置 173/172)形成分子间二硫键(P2-VP8-P[6]最易),Asn 经历最高水平的脱酰胺作用。这些结果在非复制 RV 抗原的结构模型中可视化。每个抗原的关键结构属性的建立,以及相应的稳定性指示方法,已应用于疫苗配方开发工作(见配套文件),并将用于未来的分析可比性评估。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/779b/7500458/41ee226e475f/JXPHS-2019-j.xphs.2019.08.002-g001.jpg

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