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Cardamonin targets KEAP1/NRF2 signaling for protection against atherosclerosis
Pengfei Fan1,2, Huali Meng1,2, Wenhao Hao1,2
1Department of Nutrition and Food Hygiene, School of Public Health, Cheeloo College of Medicine, Shandong University, 44 Wenhuaxi Rd., Jinan, Shandong 250012, China. hwu@sdu.edu.cn.
Insights
Cardamonin (CAD) effectively prevents atherosclerosis by reducing inflammation and oxidative stress. This natural compound activates the NRF2/HO1 pathway, offering a promising new strategy for cardiovascular disease intervention.
Area of Science:
- Cardiovascular Research
- Pharmacology
- Nutritional Science
Background:
- Atherosclerosis (AS) is a major global cause of death with limited effective treatments.
- Cardamonin (CAD), a natural bioactive compound, has not been previously studied for its anti-atherosclerotic potential.
Purpose of the Study:
- To investigate the therapeutic effects of Cardamonin (CAD) on atherosclerosis.
- To elucidate the molecular mechanisms underlying CAD's action in preventing AS.
Main Methods:
- Utilized low-density lipoprotein receptor knockout mice and TNF-α-stimulated endothelial cells (ECs).
- Administered CAD for 12 weeks, followed by analysis of aortic tissues and cellular responses.
- Employed RNA-sequencing to identify molecular pathways affected by CAD.
- Performed molecular docking assays to assess CAD's interaction with key proteins.
Main Results:
- CAD significantly inhibited AS formation, reduced necrotic core areas, and decreased inflammation and oxidative stress in mouse aortas.
- CAD mitigated TNF-α-induced inflammation and oxidative stress in ECs.
- CAD activated the NRF2/HO1 signaling pathway, independent of the Aryl hydrocarbon receptor (AHR).
- CAD directly binds to the Kelch domain of KEAP1, promoting NRF2 nuclear translocation.
Conclusions:
- Cardamonin (CAD) demonstrates significant anti-atherosclerotic properties.
- CAD functions by activating the NRF2/HO1 pathway through direct interaction with KEAP1.
- CAD represents a promising novel therapeutic candidate for atherosclerosis intervention.
Abstract:
Atherosclerosis (AS)-induced cardiovascular disease is a leading cause of death worldwide. To date, there is still a lack of effective approaches for AS intervention. Cardamonin (CAD) is a bioactive food component, but its effect on AS is unknown. In this work, CAD was investigated for its effect on AS using low-density lipoprotein receptor knockout mice and tumor necrosis factor-alpha (TNF-α)-stimulated endothelial cells (ECs). After a 12-week intervention, CAD was found to significantly prevent AS formation in the aortic root and aortic tree, reduce the necrotic core area, and inhibit aortic inflammation and oxidative stress. Moreover, CAD quenched TNF-α-provoked inflammation and oxidative stress in ECs. RNA-sequencing identified nuclear factor erythroid-2 related factor 2 (NFE2L2, NRF2)/heme oxidase 1 (HO1) signaling to be drastically activated by CAD. CAD is a known activator of the aryl hydrocarbon receptor (AHR) which is a transcription factor of the NFE2L2 gene. Surprisingly, AHR was not required for CAD's action on the activation of NRF2/HO1 signaling since AHR gene silencing did not reverse this effect. Furthermore, a molecular docking assay showed a strong binding potential of CAD to the Kelch domain of the Kelch-like ECH-associated protein 1 (KEAP1) which sequesters NRF2 in the cytoplasm. Both CAD and the Kelch domain inhibitor Ki696 promoted NRF2 nuclear translocation, whereas the combination of CAD and Ki696 did not yield a greater effect compared with either CAD or Ki696, confirming the interaction of CAD with the Kelch domain. This work provides an experimental basis for CAD as a novel and effective bioactive food component in future AS interventions.
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