开发和鉴定嗜吞噬细胞杀伤试验,以评估生物结合大肠杆菌疫苗的免疫原性。

Q2 Biochemistry, Genetics and Molecular Biology Clinical and Vaccine Immunology Pub Date : 2017-12-05 Print Date: 2017-12-01 DOI:10.1128/CVI.00123-17
Darren Abbanat, Todd A Davies, Karen Amsler, Wenping He, Kellen Fae, Sarah Janssen, Jan T Poolman, Germie P J M van den Dobbelsteen
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引用次数: 0

摘要

随着耐多药菌株的增加,肠道外致病性大肠埃希菌(ExPEC)造成的全球疾病负担日益加重。多价 ExPEC O 抗原生物结合疫苗可对预防菌血症和尿路感染产生重大影响。开发 ExPEC 疫苗需要一个读数来评估抗体的功能。我们以肺炎球菌结合疫苗的方法为基础,针对四种 ExPEC 血清型(血清型 O1A、O2、O6A 和 O25B)开发了一种嗜吞噬细胞杀伤试验(OPA)。通过计算精确度、线性度、真实度、总误差、工作范围和特异性,用人血清评估了该检测方法的性能。血清型 O1A 和 O6A 在精密度(重复性和中间精密度的变异系数,≤50%)、线性度(各菌株斜率的 90% 置信区间,0.80, 1.在五个血清浓度下,血清型 O2 和 O25B 在四个浓度下符合验收标准(血清型 O2 和 O25B 的最低浓度不符合最大杀灭 ≥85% 大肠杆菌细胞的系统适用性测试)。所有血清型均符合特异性验收标准(异体血清预吸附的溶蛋白指数值降低≤20%,同源血清预吸附的溶蛋白指数值降低≥70%)。化验工作范围是根据化验共同满足线性、精密度和准确度目标验收标准的最低和最高浓度确定的。已开发出适用于多种大肠杆菌血清型的 OPA,对其进行了鉴定,并将其用于评估人接种的 4 价大肠杆菌生物结合疫苗(ExPEC4V)的免疫原性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

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Development and Qualification of an Opsonophagocytic Killing Assay To Assess Immunogenicity of a Bioconjugated Escherichia coli Vaccine.

The global burden of disease caused by extraintestinal pathogenic Escherichia coli (ExPEC) is increasing as the prevalence of multidrug-resistant strains rises. A multivalent ExPEC O-antigen bioconjugate vaccine could have a substantial impact in preventing bacteremia and urinary tract infections. Development of an ExPEC vaccine requires a readout to assess the functionality of antibodies. We developed an opsonophagocytic killing assay (OPA) for four ExPEC serotypes (serotypes O1A, O2, O6A, and O25B) based on methods established for pneumococcal conjugate vaccines. The performance of the assay was assessed with human serum by computing the precision, linearity, trueness, total error, working range, and specificity. Serotypes O1A and O6A met the acceptance criteria for precision (coefficient of variation for repeatability and intermediate precision, ≤50%), linearity (90% confidence interval of the slope of each strain, 0.80, 1.25), trueness (relative bias range, -30% to 30%), and total error (total error range, -65% to 183%) at five serum concentrations and serotypes O2 and O25B met the acceptance criteria at four concentrations (the lowest concentration for serotypes O2 and O25B did not meet the system suitability test of maximum killing of ≥85% of E. coli cells). All serotypes met the acceptance criteria for specificity (opsonization index value reductions of ≤20% for heterologous serum preadsorption and ≥70% for homologous serum preadsorption). The assay working range was defined on the basis of the lowest and highest concentrations at which the assay jointly fulfilled the target acceptance criteria for linearity, precision, and accuracy. An OPA suitable for multiple E. coli serotypes has been developed, qualified, and used to assess the immunogenicity of a 4-valent E. coli bioconjugate vaccine (ExPEC4V) administered to humans.

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来源期刊
Clinical and Vaccine Immunology
Clinical and Vaccine Immunology 医学-传染病学
CiteScore
2.88
自引率
0.00%
发文量
0
审稿时长
1.5 months
期刊介绍: Cessation. First launched as Clinical and Diagnostic Laboratory Immunology (CDLI) in 1994, CVI published articles that enhanced the understanding of the immune response in health and disease and after vaccination by showcasing discoveries in clinical, laboratory, and vaccine immunology. CVI was committed to advancing all aspects of vaccine research and immunization, including discovery of new vaccine antigens and vaccine design, development and evaluation of vaccines in animal models and in humans, characterization of immune responses and mechanisms of vaccine action, controlled challenge studies to assess vaccine efficacy, study of vaccine vectors, adjuvants, and immunomodulators, immune correlates of protection, and clinical trials.
期刊最新文献
Correction for Nishimori et al., “Identification of an Atypical Enzootic Bovine Leukosis in Japan by Using a Novel Classification of Bovine Leukemia Based on Immunophenotypic Analysis” GI-19007, a Novel Saccharomyces cerevisiae-Based Therapeutic Vaccine against Tuberculosis. High-Definition Mapping of Four Spatially Distinct Neutralizing Epitope Clusters on RiVax, a Candidate Ricin Toxin Subunit Vaccine. Progress toward Development of a Vaccine against Congenital Cytomegalovirus Infection. Stable Chromosomal Expression of Shigella flexneri 2a and 3a O-Antigens in the Live Salmonella Oral Vaccine Vector Ty21a.
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