Antigen Optimization

Antigen optimization is the deliberate design or modification of an antigen to improve its stability, production, presentation, or ability to stimulate a targeted immune response. In immunology, researchers can adjust antigen sequence, structure, epitope composition, or expression properties so the resulting molecule is efficiently processed by antigen-presenting cells and recognized by B-cell or T-cell receptors. These strategies support the development of vaccines, diagnostic reagents, and immunotherapies by strengthening relevant immune responses while limiting unwanted or nonfunctional recognition. Antigen optimization also helps investigators test how molecular features influence protective immunity during infection.

Antigen Optimization - Related Videos

Research

JoVE Journal - Immunology and Infection

Development of an Antigen-driven Colitis Model to Study Presentation of Antigens by Antigen Presenting Cells to T Cells

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Cited by 9 •

2016

In this antigen-driven colitis model, OT-II CD4+ T cells expressing a red fluorescent protein were adoptively transferred into RAG-/- mice that express a green fluorescent protein in mononuclear phagocytes (MPs). The hosts were challenged with Escherichia coli (E.coli) expressing the ovalbumin protein (OVA) fused to a cyan fluorescent protein (CFP).

Viral Antigen Microarray Assay to Detect Antibody Isotypes in Serum Against Viral Antigen

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2025

In this video, we demonstrate the process for detecting antibody isotypes in multiple human serum samples using a microarray slide printed with antigenic subtypes of influenza virus strains.

Optimization of Antigen Preparation for Hemagglutination Inhibition Assay of Newcastle Disease Virus Serology

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Cited by 1 •

2025

This article presents a simplified method for preparing 4 hemagglutination units antigen for Newcastle disease virus serological testing. By accurately determining the hemagglutination titer of the antigen, combined with a more rigorous back-titration method, and a well-defined adjustment process, it enhances test efficiency, reduces false positives, and improves disease surveillance in poultry.

An Immunohistochemistry Staining for the Detection of Rabies Virus Antigens

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2025

This video demonstrates immunohistochemistry staining for rabies virus antigen detection in infected mouse brain tissue. The process includes deparaffinization and alcohol treatment, followed by proteolytic treatment to enhance antigen accessibility. Immunohistochemistry staining reveals red precipitates, confirming the presence of rabies antigens in the tissue section.

Atomic Force Microscopy to Visualize Phage–Antigen Interactions

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2026

Source: Williams, S. M. et al. Novel Atomic Force Microscopy Based Biopanning for Isolation of Morphology Specific Reagents against TDP-43 Variants in Amyotrophic Lateral Sclerosis. J. Vis. Exp. (2015)This video demonstrates tapping-mode AFM to visualize phage–antigen interactions on a mica surface. It outlines the steps for antigen immobilization, phage binding, and high-resolution nanoscale imaging.

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