Semaglutide alleviates early brain injury following subarachnoid hemorrhage by suppressing ferroptosis and neuroinflammation via SIRT1 pathway.
Am J Transl Res · 2024
Last updated 2026-09-09In a mouse study of subarachnoid hemorrhage (SAH), semaglutide improved neurological function and reduced brain swelling. It also lowered harmful markers like inflammatory cytokines (IL-1β, IL-6, TNF-α), malondialdehyde, and reactive oxygen species, while increasing protective glutathione levels. These effects depended on activating the SIRT1 pathway, suggesting semaglutide may protect brain cells by reducing inflammation and cell damage.
AI summary of the abstract below.
| Journal | Am J Transl Res, 2024 |
|---|---|
| Citations | 15 |
| Relative citation ratio | 2.82 |
| NIH percentile | 83 |
| Molecules | semaglutide |
Abstract
OBJECTIVES: Subarachnoid hemorrhage (SAH) is a major cause of incapacity and death, imposing a significant economic burden globally. Additionally, SAH is the third most prevalent form of stroke. Semaglutide affects oxidative stress, inflammation, and mitochondrial biogenesis. Specifically, the potential neuroprotective effect of semaglutide in SAH and its underlying mechanism is unclear. Accordingly, the present research intended to explore the neuroprotective effect of semaglutide in SAH and its potential molecular mechanisms.
METHODS: We constructed a C57BL/6 mouse model of SAH. The parameters assessed were neuronal ferroptosis, neuroinflammatory cytokine levels, reactive oxygen species (ROS) levels, glutathione (GSH) and malondialdehyde (MDA) levels, brain water content, and neurological score.
RESULTS: The results showed that the activation of semaglutide significantly increased neurological scores, relieved cerebral edema, decreased the levels of inflammatory cytokine nuclear factor kappa B, interleukin (IL)-1β, IL-6, tumor necrosis factor-alpha, MDA, and ROS, and increased the levels of GSH. Suppression of SIRT1 reversed these effects, indicating that semaglutide activated SIRT1 to reduce neuroinflammation, ferroptosis, and neuronal cell death after SAH. Thus, the activation of the Nrf2/HO-1 signaling pathway contributes to the neuroprotective properties of semaglutide.
CONCLUSIONS: Semaglutide can improve murine neurological outcomes and reduce neuronal damage against neuroinflammation and ferroptosis.
Verbatim abstract via PubMed 38715815 ↗
Related research
- Semaglutide and Cardiovascular Outcomes in Patients with Type 2 Diabetes.
- Once-Weekly Semaglutide in Adults with Overweight or Obesity.
- Semaglutide and Cardiovascular Outcomes in Obesity without Diabetes.
- A Placebo-Controlled Trial of Subcutaneous Semaglutide in Nonalcoholic Steatohepatitis.
- Tirzepatide versus Semaglutide Once Weekly in Patients with Type 2 Diabetes.
- Oral Semaglutide and Cardiovascular Outcomes in Patients with Type 2 Diabetes.
- Effects of Semaglutide on Chronic Kidney Disease in Patients with Type 2 Diabetes.
- Semaglutide in Patients with Heart Failure with Preserved Ejection Fraction and Obesity.