Xenobiotic Detoxification

Xenobiotic detoxification is the biological process by which organisms transform and eliminate foreign chemicals, including drugs, pollutants, and dietary compounds, to limit their harmful effects. In clinical contexts, enzymes such as cytochrome P450 often initiate Phase I reactions through oxidation, reduction, or hydrolysis; Phase II enzymes then attach polar groups through conjugation, while transporters support excretion in urine or bile. These pathways can inactivate compounds, but they may also produce reactive metabolites that cause toxicity. Understanding xenobiotic detoxification helps clinicians evaluate drug metabolism, interactions, adverse effects, and patient-specific responses, supporting safer dosing and more informed therapeutic decisions.

Xenobiotic Detoxification - Related Videos

Research

JoVE Journal - Bioengineering

Determination of the Transport Rate of Xenobiotics and Nanomaterials Across the Placenta using the ex vivo Human Placental Perfusion Model

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Cited by 56 •

2013

The ex vivo dual recirculating human placental perfusion model can be used to investigate the transfer of xenobiotics and nanoparticles across the human placenta. In this video protocol we describe the equipment and techniques required for a successful execution of a placenta perfusion.

Unveiling Xenobiotic Transport and Effects in Isolated Mitochondria: Insights from Respirometric and Enzymatic Assays

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Cited by 1 •

2025

This study introduces a methodology for studying xenobiotic effects on mitochondrial function via respirometric and enzymatic assays. It examines electron transport chain modulation in various species, offering insights for targeted biopesticide development against insect vector-borne diseases.

Investigation of Xenobiotics Metabolism In Salix alba Leaves via Mass Spectrometry Imaging

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Cited by 2 •

2020

This method uses mass spectrometry imaging (MSI) to understand metabolic processes in S. alba leaves when exposed to xenobiotics. The method allows the spatial localization of compounds of interest and their predicted metabolites within specific, intact tissues.

LC-MS Analysis of Human Platelets as a Platform for Studying Mitochondrial Metabolism

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Cited by 7 •

2016

Here we show isolated human platelets can be used as an accessible ex vivo model to study metabolic adaptations in response to the complex I inhibitor rotenone. This approach employs isotopic tracing and relative quantification by liquid chromatography-mass spectrometry and can be applied to a variety of study designs.

Research

JoVE Journal - Biochemistry
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Differential Scanning Calorimetry — A Method for Assessing the Thermal Stability and Conformation of Protein Antigen

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Cited by 117 •

2017

Differential scanning calorimetry measures the thermal transition temperature(s) and total heat energy required to denature a protein. Results obtained are used to assess the thermal stability of protein antigens in vaccine formulations.

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