Performance evaluation of serum IgG subclass quantification using a SPAPLUS turbidimetric analyzer and comparison with the BNII nephelometer
SCANDINAVIAN JOURNAL OF CLINICAL & LABORATORY INVESTIGATION
Authors: Cho, Eun Hye; Choi, Rihwa; Kang, Eun-Suk; Park, Hyung-Doo
Abstract
IgG consists of four subclasses: IgG1, IgG2, IgG3, and IgG4. Changes in the serum concentration of each subclass reflect different clinical situations, and quantification of each subclass is important to assess patients' clinical states. Herein, we evaluated the analytical performance of the SPAPLUS turbidimetric analyzer (The Binding Site, Birmingham, UK) for IgG subclass. Precision, linearity, comparison with the BNII system (Siemens Healthineers, Erlangen, Germany), and reference interval were assessed according to the Clinical and Laboratory Standards Institute (CLSI) guidelines. The repeatability and within-laboratory precision were within 5% for all IgG subclasses. The coefficient of determination (R-2) was higher than 0.99 for the analytical measurement range in all IgG subclasses. Comparison between SPAPLUS and BNII revealed significant differences in IgG1, IgG3, and IgG4 (p<.0001). IgG1 and IgG4 values were lower in SPAPLUS than BNII. On the other hand, IgG3 values were higher in SPAPLUS than BNII. The SPAPLUS turbidimetric analyzer exhibited good analytical performance for quantification of four IgG subclasses. Because of the differences between SPAPLUS and BNII, follow-up test for disease monitoring should be performed with same instrument.
Longitudinal Analysis of the Human B Cell Response to Ebola Virus Infection
CELL
Authors: Davis, Carl W.; Jackson, Katherine J. L.; McElroy, Anita K.; Halfmann, Peter; Huang, Jessica; Chennareddy, Chakravarthy; Piper, Ashley E.; Leung, Yvonne; Albarino, Cesar G.; Crozier, Ian; Ellebedy, Ali H.; Sidney, John; Sette, Alessandro; Yu, Tianwei; Nielsen, Sandra C. A.; Goff, Arthur J.; Spiropoulou, Christina F.; Saphire, Erica Ollman; Cavet, Guy; Kawaoka, Yoshihiro; Mehta, Aneesh K.; Glass, Pamela J.; Boyd, Scott D.; Ahmed, Rafi
Abstract
Ebola virus (EBOV) remains a public health threat. We performed a longitudinal study of B cell responses to EBOV in four survivors of the 2014 West African outbreak. Infection induced lasting EBOV-specific immunoglobulin G (IgG) antibodies, but their subclass composition changed over time, with IgG1 persisting, IgG3 rapidly declining, and IgG4 appearing late. Striking changes occurred in the immunoglobulin repertoire, with massive recruitment of naive B cells that subsequently underwent hypermutation. We characterized a large panel of EBOV glycoprotein-specific monoclonal antibodies (mAbs). Only a small subset of mAbs that bound glycoprotein by ELISA recognized cell-surface glycoprotein. However, this subset contained all neutralizing mAbs. Several mAbs protected against EBOV disease in animals, including one mAb that targeted an epitope under evolutionary selection during the 2014 outbreak. Convergent antibody evolution was seen across multiple donors, particularly among VH3-13 neutralizing antibodies specific for the GP1 core. Our study provides a benchmark for assessing EBOV vaccine-induced immunity.