Paramagnetic Probes

Paramagnetic probes are molecules or particles containing unpaired electrons that report on their local chemical or biological environment. Their unpaired electrons generate magnetic moments that interact with applied magnetic fields, producing detectable changes in electron paramagnetic resonance signals or altering nuclear relaxation rates in magnetic resonance imaging. In biology, these probes can reveal molecular structure, oxygen concentration, metal-ion coordination, redox state, and interactions within cells or biomolecules. By linking magnetic behavior to specific environmental conditions, paramagnetic probes support studies of protein function, cellular metabolism, membrane organization, and disease-related processes, while enabling noninvasive imaging and sensitive measurements of dynamic biological events.

Paramagnetic Probes - Related Videos

Education

JoVE Science Education - Chemistry

Electron Paramagnetic Resonance (EPR) Spectroscopy

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2023

Source: David C. Powers, Tamara M. Powers, Texas A&M In this video, we will learn the basic principles behind Electron Paramagnetic Resonance (EPR). We will use EPR spectroscopy to study how dibutylhydroxy toluene (BHT) behaves as an antioxidant in the autoxidation of aliphatic aldehydes.

Paramagnetism

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2023

Paramagnets are materials with unpaired electrons that possess a finite magnetic moment. In the absence of a magnetic field, these moments are randomly oriented, and thus the net moment is zero. Under an external field, a torque acting on the moments tends to align them along the field's direction. However, the random thermal motion of electrons produces a torque opposite to the external field and tries to disorient the moments. These two competing effects align only a few moments along the...

Research

JoVE Journal - Bioengineering

Rapid Scan Electron Paramagnetic Resonance Opens New Avenues for Imaging Physiologically Important Parameters In Vivo

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Cited by 11 •

2016

A new electron paramagnetic resonance (EPR) method, rapid scan EPR (RS-EPR), is demonstrated for 2D spectral spatial imaging which is superior to the traditional continuous wave (CW) technique and opens new venues for in vivo imaging. Results are demonstrated at 250 MHz, but the technique is applicable at any frequency.

Custom-made Microdialysis Probe Design

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Cited by 9 •

2015

Microdialysis is a commonly used technique in neuroscience research. Therefore commercial probes are in great demand.In this work a probe assembly is explained in detail to build a reliable, concentric, custom-made microdialysis probe for less than $10.

Electron Paramagnetic Resonance (EPR) Spectroscopy: Organic Radicals

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2023

Ideally, an unpaired electron shows a single peak in the EPR spectrum due to the transition between the two spin energy states. However, coupling interactions can occur between the spins of the unpaired electron and any neighboring spin-active nuclei. This hyperfine coupling results in hyperfine splitting, where the EPR signal is split into multiplets. The signals split into 2nI + 1 peaks, where n is the number of equivalent nuclei and I is the nuclear spin. These splitting patterns provide...

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