Capsid Engineering

Capsid engineering is the rational modification of a virus’s protein shell to change how viral particles assemble, interact with host cells, and trigger immune responses. By altering capsid genes or surface residues, researchers can tune receptor binding, tissue tropism, particle stability, genome packaging, and recognition by antibodies or other immune defenses. In immunology and infection research, these engineered capsids help clarify viral entry and immune evasion while supporting the development of safer vaccines, targeted viral vectors, and improved delivery systems. Comparing engineered variants can also reveal how capsid structure influences infectivity, biodistribution, and protection against infection.

Capsid Engineering - Related Videos

Research

JoVE Journal - Immunology and Infection

Alternative In Vitro Methods for the Determination of Viral Capsid Structural Integrity

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Cited by 6 •

2017

Routine detection methods utilizing viral genome amplification are limited by their inability to discriminate infectious from non-infectious particles. The purpose of this article is to provide detailed protocols for alternative methods to aid in discrimination of infectious norovirus particles using aptamer binding, dynamic light scattering, and transmission electron microscopy.

Visualizing Heat-Treated Viral Capsids Using Transmission Electron Microscopy

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2026

Source: Moore, M. D., et al. Alternative In Vitro Methods for the Determination of Viral Capsid Structural Integrity. J. Vis. Exp.(2017).This video demonstrates how purified viral capsids are heat-treated, prepared, and imaged using transmission electron microscopy (TEM) to reveal structural changes and heat-induced damage.

In Vitro Disassembly of Influenza A Virus Capsids by Gradient Centrifugation

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Cited by 4 •

2016

Disassembly of influenza A virus cores during virus entry into host cells is a multistep process. We describe an in vitro method to analyze the early stages of viral uncoating. In this approach, velocity gradient centrifugation is used to biochemically dissect the steps that initiate uncoating under defined conditions.

Isolation of Next-Generation Gene Therapy Vectors through Engineering, Barcoding, and Screening of Adeno-Associated Virus (AAV) Capsid Variants

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Cited by 2 •

2022

AAV peptide display library generation and subsequent validation through the barcoding of candidates with novel properties for the creation of next-generation AAVs.

Utilizing the Antigen Capsid-Incorporation Strategy for the Development of Adenovirus Serotype 5-Vectored Vaccine Approaches

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Cited by 1 •

2015

Here, we present a protocol to generate a proof-of-principle divalent adenovirus type 5 (Ad5) vector Ad5/H5-HVR1-KWAS-HVR5-His6 by utilizing the Antigen Capsid-Incorporation strategy. This vector was demonstrated to exhibit qualitative fitness, the capability to escape Ad5-positive sera in vitro, and the antigenicity as well as immunogenicity to the incorporated antigens.

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