Related Experiment Video
Updated: Feb 17, 2026

Exploring the Regulation of Lipid Droplet Catabolism through Lipophagy
Published on: January 31, 2025
Bioactive Lipids and Redox Signaling: Molecular Mechanism and Disease Pathogenesis
1Department of Pharmacology and Toxicology, School of Medicine, Virginia Commonwealth University, Richmond, Virginia.
Abstract:
The actions of bioactive lipids and reactive oxygen species (ROS) are usually coupled, and their interplay is a common and important mechanism mediating tissue injury, inflammation, and other pathologies. Understanding the interplay of ROS and lipid mediators will extend horizons for researchers to clarify the pathogenesis of different diseases and help identify therapeutic targets for treatment of these diseases. Some bioactive lipids are converted into oxidized lipids during cell or tissue oxidative stress such as isoprostanes and isoketals, which are even more bioactive than their precursors. Moreover, many enzymes that produce lipid mediators such as prostaglandin H synthases, lipoxygenases, and cytochrome P450 isoforms may catalyze the production of ROS. Bioactive lipids-lysophospholipids, sphingolipids, or deposited lipids in cells-are shown to stimulate redox enzymes to produce ROS. In addition, a lipid-channel-ROS axis in different organelles may be associated with the crosstalk of ROS and bioactive lipids. This Forum focuses on the crosstalk of ROS with sphingolipids, P450 eicosanoids, lysophospholipids, and deposited plasma lipids and related novel signaling pathway in their reciprocal actions, which is expected to provide novel insights into the pathogenesis of different diseases associated with the participation of these lipid mediators. It is imperative to further understand the molecular mechanism mediating the crosstalk of ROS with specific lipid mediators and to develop more effective therapeutic strategies to target the interplay of ROS and lipid mediators for treatment specific to different organ diseases. Antioxid. Redox Signal. 28, 911-915.
Insights
Reactive oxygen species (ROS) and bioactive lipids interact in disease pathogenesis. Understanding this crosstalk offers new therapeutic targets for various conditions.
Area of Science:
- Biochemistry
- Cell Biology
- Pathology
Background:
- Bioactive lipids and reactive oxygen species (ROS) are intrinsically linked, playing crucial roles in mediating tissue injury, inflammation, and disease.
- Oxidative stress can convert bioactive lipids into more potent oxidized forms like isoprostanes and isoketals.
- Enzymes involved in lipid mediator production, such as prostaglandin H synthases and lipoxygenases, can also generate ROS.
Discussion:
- Bioactive lipids, including lysophospholipids and sphingolipids, can activate redox enzymes, leading to ROS production.
- A lipid-channel-ROS axis across organelles facilitates the crosstalk between ROS and bioactive lipids.
- This review explores the reciprocal actions of ROS with sphingolipids, P450 eicosanoids, lysophospholipids, and deposited plasma lipids.
Key Insights:
- The interplay between ROS and specific lipid mediators is fundamental to understanding disease mechanisms.
- Oxidized lipids often exhibit enhanced bioactivity compared to their precursor molecules.
- Novel signaling pathways involving lipid mediators and ROS are emerging as critical in pathology.
Outlook:
- Further elucidation of the molecular mechanisms underlying ROS-lipid crosstalk is essential.
- Targeting the interplay of ROS and lipid mediators presents promising therapeutic strategies for organ-specific diseases.
- Understanding these interactions will advance research into the pathogenesis of numerous diseases.
More Related Videos
07:57Imaging and Analysis of Oil Red O-Stained Whole Aorta Lesions in an Aneurysm Hyperlipidemia Mouse Model
Published on: May 2, 2022
10:24Defining Hsp33's Redox-regulated Chaperone Activity and Mapping Conformational Changes on Hsp33 Using Hydrogen-deuterium Exchange Mass Spectrometry
Published on: June 7, 2018
Related Concept Videos
Lipid-derived Compounds in the Human Body
Fat-soluble Vitamins
Fat-soluble vitamins, including vitamins A, D, E, and K, are required in minimal quantities, but their deficiencies can lead to severely abnormal physiological conditions. For example, vitamin A deficiency can cause night blindness, dry skin,...
Overview of Lipid Metabolism
Lipolysis: The Breakdown of Lipids:
Lipolysis is the process of breaking down lipids, particularly triglycerides, into glycerol and fatty acids. This process typically occurs in the adipose tissue and is triggered by various hormones, including glucagon and...
Redox Reactions
Redox Reactions
Signal Transduction: Overview
Typically, signal transduction involves three...
Peroxisomes