Network Toxicology

Network toxicology is a systems-level approach that examines how chemicals influence interconnected biological targets, pathways, and disease processes, helping clarify toxicity beyond single-molecule effects. It combines toxicology with network biology, bioinformatics, and often omics data to map chemical–target interactions, identify perturbed genes or proteins, and trace how molecular changes propagate through cellular pathways to produce adverse outcomes. In medicine, network toxicology supports drug safety evaluation, toxicity prediction, mechanism-of-action studies, and the assessment of environmental or occupational exposures. By integrating diverse evidence, it can reveal shared toxicity mechanisms, prioritize experimental testing, and guide the development of safer therapeutic compounds.

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Research

JoVE Journal - Biology
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High Content Screening Analysis to Evaluate the Toxicological Effects of Harmful and Potentially Harmful Constituents (HPHC)

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Cited by 23 •

2016

The objective of the study was to assess the biological impact of 15 cigarette smoke constituents using a combination of an impedance-based real time cell analyzer and a high-content screening (HCS)-based platform for toxicological assessment in vitro. This study provides information on effective doses, toxicity and modes of action of the tested compounds.

Education

JoVE Core - Molecular Biology

Protein Networks

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2020

An organism can have thousands of different proteins, and these proteins must cooperate to ensure the health of an organism. Proteins bind to other proteins and form complexes to carry out their functions. Many proteins interact with multiple other proteins creating a complex network of protein interactions. These interactions can be represented through maps depicting protein-protein interaction networks, represented as nodes and edges. Nodes are circles that are representative of a protein,...

Network Covalent Solids

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2020

Network covalent solids contain a three-dimensional network of covalently bonded atoms as found in the crystal structures of nonmetals like diamond, graphite, silicon, and some covalent compounds, such as silicon dioxide (sand) and silicon carbide (carborundum, the abrasive on sandpaper). Many minerals have networks of covalent bonds. To break or to melt a covalent network solid, covalent bonds must be broken. Because covalent bonds are relatively strong, covalent network solids are typically...

An Intestine/Liver Microphysiological System for Drug Pharmacokinetic and Toxicological Assessment

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Cited by 3 •

2020

We exposed a microphysiological system (MPS) with intestine and liver organoids to acetaminophen (APAP). This article describes the methods for organoid production and APAP pharmacokinetic and toxicological property assessments in the MPS. It also describes the tissue functionality analyses necessary to validate the results.

Network Analysis of the Default Mode Network Using Functional Connectivity MRI in Temporal Lobe Epilepsy

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Cited by 35 •

2014

The Default Mode Network (DMN) in Temporal Lobe Epilepsy (TLE) is analyzed in the resting state of the brain using seed-based functional connectivity MRI (fcMRI).

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