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Resveratrol reduces ROS-induced ferroptosis by activating SIRT3 and compensating the GSH/GPX4 pathway
Xingjie Wang1, Tianli Shen1, Jie Lian2
1Department of General Surgery, The First Affiliated Hospital of Xi'an Jiaotong University, Xi'an, Shaanxi, 710061, China.
Background:
Intestinal ischemia-reperfusion injury occurs in acute intestinal obstruction, intussusception, acute mesenteric artery embolism, and other diseases and can lead to local intestinal necrosis, distant organ involvement, or systemic reactions, with high morbidity and mortality. Ferroptosis plays a crucial role in intestinal ischemia-reperfusion injury, and inhibition of ferroptosis may provide new approaches for treating the disease. SIRT3 protects cells from oxidative stress and may be involved in the process of ferroptosis. We hypothesized that resveratrol, an agonist of SIRT3, could ameliorate intestinal ischemia-reperfusion injury by compensating the GSH/GPX4 pathway.
Methods:
Intestinal ischemia-reperfusion (I/R) and Caco-2 hypoxia-reoxygenation models were established. Transmission electron microscopy was used to assess mitochondrial function; the Chiu's score was used to evaluate the degree of intestinal mucosal injury based on HE staining; and Western blot was used to detect the SIRT3/FoxO3a pathway, tight junction proteins and ferroptosis-related protein expression. Sirt3-/- C57, shSIRT3-Caco-2 cells and siFoxO3a-Caco-2 cells were established. C11-BODIPY was used to detect lipid peroxide in cells; FD4 and IFABP were used to detect intestinal permeability; MitoSOX was used to detect ROS levels; and MitoTracker and immunofluorescence colocalization were used to detect SIRT3 levels.
Results:
In the intestinal I/R model, I/R injury occurs mainly during the reperfusion period and leads to ferroptosis through the GSH/GPX4 pathway. Resveratrol could reduce ferroptosis and ameliorate I/R injury by activating SIRT3. In Sirt3-/- mice, more intestinal mucosal cells underwent ferroptosis, I/R injury was more severe, and resveratrol lost the ability to ameliorate I/R injury. In addition, hypoxia-reoxygenation increased RSL3-induced ferroptosis sensitivity in Caco-2 cells in vitro. In the presence of shSIRT3 or RSL3 alone, resveratrol could ameliorate Caco-2 ferroptosis, but not RSL3-induced shSIRT3-Caco-2 ferroptosis. Furthermore, resveratrol might activate the SIRT3/FoxO3a pathway, increase the expression of SOD2 and catalase, and inhibit ROS generation, thus reducing lipid peroxidation and ferroptosis.
Conclusion:
To date, this is the first study to show that resveratrol ameliorates intestinal ischemia-reperfusion injury by activating SIRT3 and reducing ferroptosis. Resveratrol can reduce intestinal ischemia-reperfusion injury by activating the SIRT3/FoxO3a pathway, increasing the expression of SOD2 and catalase, reducing ROS and LPO production, compensating for the GSH/GPX4 pathway and inhibiting ferroptosis. Resveratrol increases the expression of SOD2 and catalase, reduces the production of ROS and LPO, compensates for the GSH/GPX4 pathway and inhibits ferroptosis by activating the SIRT3/FoxO3a pathway.
Insights
Resveratrol protects against intestinal ischemia-reperfusion injury by activating SIRT3, which inhibits ferroptosis. This study demonstrates resveratrol
Area of Science:
- Cellular Biology
- Gastroenterology
- Biochemistry
Background:
- Intestinal ischemia-reperfusion (I/R) injury is a severe condition with high mortality.
- Ferroptosis, a regulated cell death pathway, is a key contributor to I/R injury.
- SIRT3, known for protecting against oxidative stress, may influence ferroptosis.
Purpose of the Study:
- To investigate the role of resveratrol, a SIRT3 agonist, in ameliorating intestinal I/R injury.
- To determine if resveratrol's protective effects are mediated by the SIRT3/GSH/GPX4 pathway.
- To explore the underlying molecular mechanisms of resveratrol's action in I/R injury.
Main Methods:
- Established rat intestinal I/R and Caco-2 cell hypoxia-reoxygenation models.
- Assessed mitochondrial function, intestinal mucosal injury (Chiu's score), and protein expression (Western blot).
- Utilized Sirt3 knockout/knockdown models and measured lipid peroxidation, intestinal permeability, and reactive oxygen species (ROS).
Main Results:
- Resveratrol reduced ferroptosis and ameliorated I/R injury by activating SIRT3.
- In Sirt3-deficient models, resveratrol's protective effects were lost, and I/R injury was exacerbated.
- Resveratrol activated the SIRT3/FoxO3a pathway, increasing SOD2 and catalase, reducing ROS and lipid peroxidation, thereby inhibiting ferroptosis.
Conclusions:
- This is the first study demonstrating resveratrol ameliorates intestinal I/R injury by activating SIRT3 and inhibiting ferroptosis.
- Resveratrol protects intestinal tissue by activating the SIRT3/FoxO3a pathway, reducing oxidative stress and ferroptosis.
- Targeting the SIRT3 pathway with resveratrol offers a potential therapeutic strategy for intestinal I/R injury.
