Singh Susheel K, Plieskatt Jordan, Chourasia Bishwanath K, Singh Vandana, Bengtsson Karin Lövgren, Reimer Jenny M, van Daalen Renate C, Teelen Karina, van de Vegte-Bolmer Marga, van Gemert Geert-Jan, Jore Matthijs M, Theisen Michael
Department for Congenital Disorders, Statens Serum Institut, Copenhagen, Denmark.
Centre for Medical Parasitology at Department of Immunology and Microbiology, University of Copenhagen, Copenhagen, Denmark.
NPJ Vaccines. 2021 Oct 12;6(1):120. doi: 10.1038/s41541-021-00383-8.
The Plasmodium falciparum Pfs230 and Pfs48/45 proteins are leading candidates for a malaria transmission-blocking vaccine (TBV). Previously, we showed that a Pfs230-Pfs48/45 fusion protein elicits higher levels of functional antibodies than the individual antigens, but low yields hampered progression to clinical evaluation. Here we identified a modified construct (ProC6C) with a circumsporozoite protein (CSP) repeat-linker sequence that enhances expression. A scalable and reproducible process in the Lactococcus lactis expression system was developed and ProC6C was successfully transferred for manufacturing under current Good Manufacturing Practices (cGMP). In addition, a panel of analytical assays for release and stability were developed. Intact mass spectrometry analysis and multiangle light scattering showed that the protein contained correct disulfide bonds and was monomeric. Immunogenicity studies in mice showed that the ProC6C adsorbed to Alhydrogel, with or without Matrix-M, elicited functional antibodies that reduced transmission to mosquitoes and sporozoite invasion of human hepatocytes. Altogether, our data support manufacture and clinical evaluation of ProC6C as a multistage malaria-vaccine candidate.
恶性疟原虫的Pfs230和Pfs48/45蛋白是疟疾传播阻断疫苗(TBV)的主要候选抗原。此前,我们发现Pfs230 - Pfs48/45融合蛋白诱导产生的功能性抗体水平高于单个抗原,但产量低阻碍了其进入临床评估阶段。在此,我们鉴定出一种带有环子孢子蛋白(CSP)重复连接序列的修饰构建体(ProC6C),该序列可增强表达。我们在乳酸乳球菌表达系统中开发了一种可扩展且可重复的生产工艺,并成功按照现行药品生产质量管理规范(cGMP)将ProC6C转移至生产环节。此外,还开发了一系列用于产品放行和稳定性检测的分析方法。完整的质谱分析和多角度光散射表明该蛋白含有正确的二硫键且为单体形式。在小鼠体内进行的免疫原性研究表明,吸附于氢氧化铝佐剂(有无Matrix - M)的ProC6C可诱导产生功能性抗体,减少疟原虫向蚊子的传播以及子孢子对人肝细胞的侵袭。总之,我们的数据支持将ProC6C作为多阶段疟疾疫苗候选物进行生产和临床评估。