Receptor Ligand Kinetics

Receptor-ligand kinetics describes the time-dependent binding between a receptor and its ligand, providing information beyond whether an interaction occurs. The process is governed by ligand association and dissociation rates, commonly represented by the rate constants kon and koff, while their ratio determines the equilibrium dissociation constant, Kd, a measure of binding affinity. In bioengineering, these parameters guide the design of biosensors, targeted therapeutics, engineered cell systems, and receptor-functionalized biomaterials. Measuring binding and release rates helps researchers predict signal duration, optimize molecular recognition, compare candidate ligands, and tune engineered systems for sensitivity, selectivity, and controlled response.

Receptor Ligand Kinetics - Related Videos

Research

JoVE Journal - Bioengineering

Fluorescence Biomembrane Force Probe: Concurrent Quantitation of Receptor-ligand Kinetics and Binding-induced Intracellular Signaling on a Single Cell

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Cited by 55 •

2015

We describe a technique for concurrently measuring force-regulated single receptor-ligand binding kinetics and real-time imaging of calcium signaling in a single T lymphocyte.

Titration ELISA as a Method to Determine the Dissociation Constant of Receptor Ligand Interaction

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Cited by 29 •

2018

A detailed protocol to perform a titration ELISA is described. Moreover, a novel algorithm is presented to evaluate titration ELISAs and to obtain a dissociation constant of binding of a soluble ligand to a microtiter plate-immobilized receptor.

Biomembrane Force Probe to Quantitate Receptor-Ligand Interactions

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2025

In this video, biomembrane force probes (BFPs) are used to measure the forces between receptors and ligands. This technique can detect interactions by monitoring the pressure needed to break the bonds between the pMHC conjugated on the probe beads and the TCRs on the target cells.

Competitive Binding Assay to Identify Compounds Disrupting Receptor-Ligand Interactions

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2025

In this video, we describe a flow cytometry-based competitive binding assay to detect the interactions between the CXC Chemokine Receptor 4 (CXCR4) and its fluorescently-labeled natural ligand CXC Chemokine Ligand 12 (CXCL12), in the presence of a CXCR4-targeting small molecule. Incubating CXCR4-expressing cells with lower small molecule concentrations allows CXCR4-CXCL12 binding to some extent, which progressively declines upon a gradual increase in small molecule concentrations.

Bio-layer Interferometry for Measuring Kinetics of Protein-protein Interactions and Allosteric Ligand Effects

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Cited by 117 •

2014

The protocols here describe kinetic assays of protein-protein interactions with Bio-layer Interferometry. F-type ATP synthase, which is involved in cellular energy metabolism, can be inhibited by its ε subunit in bacteria. We have adapted Bio-layer Interferometry to study interactions of the catalytic complex with ε’s inhibitory C-terminal domain.

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