Chemical Probe Substrates

Chemical probe substrates are designed molecules that interact with a target enzyme and generate a measurable signal, enabling biochemical activity to be detected or quantified. Their structure typically combines a recognition element, which binds the enzyme’s active site, with a reactive or reporter group that changes after catalysis, producing an optical, fluorescent, luminescent, or other analytical readout. In biochemistry, researchers use these substrates to characterize enzyme specificity and kinetics, compare catalytic activity, and monitor pathways in complex samples. Careful control experiments help distinguish true enzymatic conversion from nonspecific reactions, supporting applications in diagnostics, inhibitor screening, and mechanistic studies.

Chemical Probe Substrates - Related Videos

Research

JoVE Journal - Engineering

Probing C84-embedded Si Substrate Using Scanning Probe Microscopy and Molecular Dynamics

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Cited by 1 •

2016

This paper reports the nanomaterial fabrication of a fullerene Si substrate inspected and verified by nanomeasurements and molecular dynamic simulation.

Utilizing Thermal Shift Assay to Probe Substrate Binding to Selenoprotein O

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Cited by 2 •

2024

Here, we present the thermal shift assay, a high-throughput, fluorescence-based technique used to investigate the binding of small molecules to proteins of interest.

Biophysical Assays to Probe the Mechanical Properties of the Interphase Cell Nucleus: Substrate Strain Application and Microneedle Manipulation

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Cited by 25 •

2011

We present two independent, microscope-based tools to measure the induced nuclear and cytoskeletal deformations in single, living adherent cells in response to global or localized strain application. These techniques are used to determine nuclear stiffness (i.e., deformability) and to probe intracellular force transmission between the nucleus and the cytoskeleton.

The Microfluidic Probe: Operation and Use for Localized Surface Processing

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Cited by 5 •

2009

In this video we present the microfluidic probe1 (MFP). We explain in detail how to assemble the MFP, mount it atop an inverted microscope, and align it relative to the substrate surface, and finally show how to use it to process a substrate surface immersed in a buffer solution.

Research

JoVE Journal - Bioengineering
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Large-area Scanning Probe Nanolithography Facilitated by Automated Alignment and Its Application to Substrate Fabrication for Cell Culture Studies

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Cited by 6 •

2018

Here we present a protocol for wide-area scanning probe nanolithography enabled by the iterative alignment of probe arrays, as well as the utilization of lithographic patterns for cell-surface interaction studies.

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