Omentin-1 attenuates glucocorticoid-induced cardiac injury by phosphorylating GSK3β
Zhousheng Jin1, Fangfang Xia1, Jiaojiao Dong1
1Department of Anesthesiology, the First Affiliated Hospital of Wenzhou Medical University, Zhejiang Province, China.
Insights
Glucocorticoid excess damages the heart, but omentin-1 may protect it. This study shows omentin-1 protects against glucocorticoid-induced cardiac injury by activating the GSK3β pathway.
Area of Science:
- Cardiovascular Biology
- Endocrinology
- Metabolic Disease Research
Background:
- Glucocorticoid excess causes cardiovascular issues like hypertension and cardiac hypertrophy.
- Omentin-1, an adipokine, shows promise in cardiovascular disease, but its role in glucocorticoid-induced cardiac injury is unknown.
Purpose of the Study:
- To investigate the role of omentin-1 in glucocorticoid excess-induced cardiac injuries.
- To explore the potential therapeutic effects of omentin-1 in mitigating these injuries.
Main Methods:
- Utilized a rat model of glucocorticoid-induced cardiac injury and studied patients with abnormal cardiac function.
- Administered omentin-1 via adeno-associated virus and analyzed cardiac function, mitochondrial activity, and the GSK3β pathway.
- Correlated glucocorticoid and omentin-1 levels with cardiac parameters in patients with Cushing's syndrome.
Main Results:
- Glucocorticoid excess reduced serum omentin-1 levels in rats, correlating with cardiac dysfunction.
- Omentin-1 upregulation attenuated cardiac hypertrophy and functional disorders, improving mitochondrial function.
- Omentin-1 activated the GSK3β pathway in the heart. In patients, glucocorticoid levels negatively correlated with omentin-1.
Conclusions:
- Omentin-1 plays a protective role against glucocorticoid excess-induced cardiac injuries.
- The omentin-1/GSK3β pathway represents a potential therapeutic target for managing glucocorticoid's cardiac side effects.
Abstract:
Glucocorticoid excess often causes a variety of cardiovascular complications, including hypertension, atherosclerosis, and cardiac hypertrophy. To abrogate its cardiac side effects, it is necessary to fully disclose the pathophysiological role of glucocorticoid in cardiac remodelling. Previous clinical and experimental studies have found that omentin-1, one of the adipokines, has beneficial effects in cardiovascular diseases, and is closely associated with metabolic disorders. However, there is no evidence to address the potential role of omentin-1 in glucocorticoid excess-induced cardiac injuries. To uncover the links, the present study utilized rat model with glucocorticoid-induced cardiac injuries and clinical patients with abnormal cardiac function. Chronic administration of glucocorticoid excess reduced rat serum omentin-1 concentration, which closely correlated with cardiac functional parameters. Intravenous administration of adeno-associated virus encoding omentin-1 upregulated the circulating omentin-1 level and attenuated glucocorticoid excess-induced cardiac hypertrophy and functional disorders. Overexpression of omentin-1 also improved cardiac mitochondrial function, including the reduction of lipid deposits, induction of mitochondrial biogenesis, and enhanced mitochondrial activities. Mechanistically, omentin-1 phosphorylated and activated the GSK3β pathway in the heart. From a study of 28 patients with Cushing's syndrome and 23 healthy subjects, the plasma level of glucocorticoid was negatively correlated with omentin-1, and was positively associated with cardiac ejection fraction and fractional shortening. Collectively, the present study provided a novel role of omentin-1 in glucocorticoid excess-induced cardiac injuries and found that the omentin-1/GSK3β pathway was a potential therapeutic target in combating the side effects of glucocorticoid.
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