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Updated: Jan 26, 2026

In Silico Clinical Trials for Cardiovascular Disease
Published on: May 27, 2022
An update on lipid oxidation and inflammation in cardiovascular diseases
Shanshan Zhong1, Luxiao Li1, Xia Shen2
1CAS Key Laboratory of Nutrition, Metabolism and Food Safety, Shanghai Institute of Nutrition and Health, Shanghai Institutes for Biological Sciences (SIBS), University of Chinese Academy of Sciences, Chinese Academy of Sciences, Shanghai, 200031, China.
Insights
Oxidative stress causes lipid peroxidation, generating oxidized lipids that promote inflammation and atherosclerosis. Targeting these oxidized lipids offers a new therapeutic strategy for cardiovascular diseases (CVD).
Area of Science:
- Biochemistry
- Cardiology
- Immunology
Background:
- Cardiovascular diseases (CVD) are a leading global cause of death, primarily driven by atherosclerosis.
- Oxidative stress and inflammation are key mechanisms underlying atherosclerosis development.
- Oxidized lipids, formed via lipid peroxidation (LPO), actively contribute to inflammatory responses in atherosclerosis.
Purpose of the Study:
- To review the mechanisms of free radical oxidation of lipids.
- To discuss analytical techniques for detecting oxidized phospholipids and cholesterol esters in low-density lipoproteins (LDL).
- To summarize experimental and clinical evidence on the role of lipid oxidation in CVD-related inflammation.
Main Methods:
- Literature review focusing on lipid peroxidation (LPO) and its role in cardiovascular diseases (CVD).
- Analysis of experimental and clinical studies investigating oxidized lipids and inflammation.
- Discussion of analytical methodologies for oxidized lipid detection.
Main Results:
- Lipid peroxidation generates oxidized lipids that interact with immune and endothelial cells, promoting inflammation.
- Elevated levels of oxidized phospholipids and cholesterol esters are implicated in atherosclerosis.
- Clinical trials targeting lipoprotein (a) (Lp(a)) and associated oxidized phospholipids are exploring new CVD treatment avenues.
Conclusions:
- Targeting oxidized lipids and inflammation represents a promising therapeutic strategy for atherosclerotic cardiovascular diseases (CVD).
- Further research is needed to fully elucidate the role of LPO in CVD pathogenesis and to develop effective interventions.
Abstract:
Cardiovascular diseases (CVD), including ischemic heart diseases and cerebrovascular diseases, are the leading causes of morbidity and mortality worldwide. Atherosclerosis is the major underlying factor for most CVD. It is well-established that oxidative stress and inflammation are two major mechanisms leading to atherosclerosis. Under oxidative stress, polyunsaturated fatty acids (PUFA)-containing phospholipids and cholesterol esters in cellular membrane and lipoproteins can be readily oxidized through a free radical-induced lipid peroxidation (LPO) process to form a complex mixture of oxidation products. Overwhelming evidence demonstrates that these oxidized lipids are actively involved in the inflammatory responses in atherosclerosis by interacting with immune cells (such as macrophages) and endothelial cells. In addition to lipid lowering in the prevention and treatment of atherosclerotic CVD, targeting chronic inflammation has been entering the medical realm. Clinical trials are under way to lower the lipoprotein (a) (Lp(a)) and its associated oxidized phospholipids, which will provide clinical evidence that targeting inflammation caused by oxidized lipids is a viable approach for CVD. In this review, we aim to give an update on our understanding of the free radical oxidation of LPO, analytical technique to analyze the oxidation products, especially the oxidized phospholipids and cholesterol esters in low density lipoproteins (LDL), and focusing on the experimental and clinical evidence on the role of lipid oxidation in the inflammatory responses associated with CVD, including myocardial infarction and calcific aortic valve stenosis. The challenges and future directions in understanding the role of LPO in CVD will also be discussed.
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