T-cell engaging bispecific antibodies (TCBs) targeting CD3 and tumor-specific antigens are very promising therapeutic modalities. Since CD3 binding is crucial for the potency of TCBs, understanding the functional impact of CD3 antigen-binding fragment modifications is of utmost importance for defining critical quality attributes (CQA). The current CQA assessment strategy requires the integration of structure-based physicochemical separation and functional cell-based potency assays. However, this strategy is tedious, and coexisting proteoforms with potentially different functionalities may not be individually assessed. This increases the degree of ambiguities for defining meaningful CQAs, particularly for complex bispecific antibody formats such as TCBs. Here, we report for the first time a proof-of-concept study to separate and identify critically modified proteoforms of TCBs using functional CD3 target affinity chromatography (AC) coupled with online mass spectrometry (MS). Our method enabled functional distinction of relevant deamidated and glycosylated proteoforms and the simultaneous assessment of product-related variants such as TCB mispairings. For example, CD3 AC-MS allowed us to separate TCB mispairings with increased CD3 binding (i.e., knob-knob homodimers) within the bound fraction. The functional separation of proteoforms was validated using an established workflow for CQA identification based on thoroughly characterized ion-exchange fractions of a 2+1 TCB. In addition, the new method facilitated the criticality assessment of post-translational modifications in stress studies and structural variants in early stage clone selection. CD3 AC-MS has high impact for streamlining the integration of functional and structural characterizations of the large landscape of therapeutic CD3 targeting TCBs from early stage research to late stage characterization.
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http://dx.doi.org/10.1021/acs.analchem.2c03827 | DOI Listing |
Vestn Otorinolaringol
December 2024
Dagestan State Medical University, Makhachkala, Russia.
Unlabelled: This paper presents the results of the evaluation of cellular and humoral immunity in chronic purulent otitis media (CPOM), as well as cytokine status, and studies the effect of azoximers bromide on the immunity system in CPOM.
Objective: To study the clinical and immunologic effectiveness of azoximer bromide in the postoperative period during tympanoplasty in CPOM patients.
Material And Methods: Forty-nine patients with mesotympanitis and epitympanitis were examined.
Antibodies (Basel)
November 2024
Parasitic Immunobiology and Immunomodulation Research Group (INMUNOPAR), Complutense University, 28040 Madrid, Spain.
Background/objectives: In a previous study, we described elevated anti- IgG levels in septic patients in relation to disease severity. In this study, our objective was to analyze the evolution of anti- immunoglobulins in septic patients during hospital admission and their association with αβ and γδ T cell subsets.
Methods: We recruited 80 subjects: 40 patients with sepsis and 40 controls.
Front Immunol
December 2024
Department of Molecular Microbiology, Institute of Microbiology, Biotechnology and Immunology, Faculty of Biology and Environmental Protection, University of Lodz, Lodz, Poland.
Introduction: Toxoplasmosis is caused by the opportunistic, cosmopolitan protozoan is one of the most common parasitoses in the world. This parasite can pose a threat to people with immunodeficiency but also to the fetus, since the invasion can lead to miscarriages. Moreover, this parasite can contribute to economic losses in livestock farming.
View Article and Find Full Text PDFToxicol Pathol
December 2024
AbbVie Inc., North Chicago, Illinois, USA.
Enhanced histopathology of the immune system uses a precise, compartment-specific, and semi-quantitative evaluation of lymphoid organs in toxicology studies. The assessment of lymphocyte populations in tissues is subject to sampling variability and limited distinctive cytologic features of lymphocyte subpopulations as seen with hematoxylin and eosin (H&E) staining. Although immunohistochemistry is necessary for definitive characterization of T- and B-cell compartments, routine toxicologic assessments are based solely on H&E slides.
View Article and Find Full Text PDFJ Chin Med Assoc
December 2024
Department of Emergency Medicine, The Third Clinical Medical College of Ningxia Medical University, Ningxia, Yinchuan, China The Third Clinical Medical College of Ningxia Medical University, Ningxia,Yinchuan, China.
Background: COVID-19, caused by SARS-CoV-2, has had a significant impact on global health. While the virus primarily affects the respiratory system, the intricate interplay between immune cells and the virus remains poorly understood. This study investigates the causal relationship between 731 immune cell phenotypes and COVID-19 using Mendelian randomization analysis.
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