T-cell Receptor Mimic

A T-cell receptor mimic is a molecule, often an antibody or engineered binding protein, designed to recognize a specific peptide presented by a major histocompatibility complex (MHC) molecule on a cell surface. By binding the peptide-MHC complex, it reproduces the targeting function of a T-cell receptor without requiring a complete T cell, enabling selective recognition of intracellular proteins displayed on infected or abnormal cells. In immunology and infection research, T-cell receptor mimics help identify disease-associated antigens, investigate antigen presentation, and guide the development of targeted diagnostics and therapeutics. Their specificity also supports studies of pathogen surveillance and immune evasion.

T-cell Receptor Mimic - Related Videos

Research

JoVE Journal - Biology
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Production and Testing of Antimicrobial Peptides and Their Mimics

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2026

This protocol describes a method for producing and evaluating the antimicrobial activity and cytotoxicity of the cationic peptide Mel4 and peptide mimic RK758. By integrating chemical synthesis, recombinant expression, and standardized functional assays, it provides a streamlined workflow for the production and testing of peptides and small-molecule mimics.

The Encapsulation of Cell-free Transcription and Translation Machinery in Vesicles for the Construction of Cellular Mimics

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Cited by 12 •

2013

Herein we describe simple methods for the preparation of vesicles, the encapsulation of transcription and translation machinery, and the monitoring of protein production. The resulting cell-free systems can be used as a starting point from which to build increasingly complex cellular mimics.

Research

JoVE EoE - Viral Growth and Techniques

Evaluating Virus Spread Inhibition Through microRNA Mimic-Mediated Genome Silencing

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2026

Source: Ruiz, A. J. and Russell, S. J. MicroRNA-based Regulation of Picornavirus Tropism. J. Vis. Exp. (2017)This video demonstrates the use of synthetic microRNA mimics to inhibit viral replication in cultured epithelial-like cells selectively. It highlights how microRNA-directed genome silencing can block virus spread and confirm targeting specificity through downstream infectivity analysis.

Blood-Brain Barrier Mimic Permeability Assay: An In Vitro Assay to Assess the Permeability of BBB Mimic to Tracer Molecules

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2023

This video describes a permeability assay to evaluate the permeability of in vitro blood-brain barrier using sodium fluorescein molecules.

Studying Cell Rolling Trajectories on Asymmetric Receptor Patterns

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Cited by 3 •

2011

We describe a protocol to observe and analyze cell rolling trajectories on asymmetric receptor-patterned substrates. The resulting data are useful for engineering of receptor-patterned substrates for label-free cell separation and analysis.

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