Liraglutide activates autophagy <i>via</i> GLP-1R to improve functional recovery after spinal cord injury.
Oncotarget · 2017
Last updated 2026-08-29In a study on spinal cord injury, the drug liraglutide improved recovery by reducing cell death and increasing autophagy—a process where cells clean out damaged components. The effects were linked to the GLP-1 receptor, as blocking it reversed some benefits, including reduced cell death and changes in cell structure. The study suggests liraglutide’s benefits may depend on this receptor and its role in activating autophagy.
AI summary of the abstract below.
| Journal | Oncotarget, 2017 |
|---|---|
| Citations | 34 |
| Relative citation ratio | 1.38 |
| NIH percentile | 62 |
| Molecules | liraglutide |
Abstract
Therapeutics used to treat central nervous system (CNS) injury are designed to promote axonal regeneration and inhibit cell death. Previous studies have shown that liraglutide exerts potent neuroprotective effects after brain injury. However, little is known if liraglutide treatment has neuroprotective effects after spinal cord injury (SCI). This study explores the neuroprotective effects of liraglutide and associated underlying mechanisms. Our results showed that liraglutide could improve recovery after injury by decreasing apoptosis as well as increasing microtubulin acetylation, and autophagy. Autophagy inhibition with 3-methyladenine (3-MA) partially reversed the preservation of spinal cord tissue and decreased microtubule acetylation and polymerization. Additionally, siRNA knockdown of GLP-1R suppressed autophagy and reversed mTOR inhibition induced by liraglutide , indicating that GLP-1R regulates autophagic flux. GLP-1R knockdown ameliorated the mTOR inhibition and autophagy induction seen with liraglutide treatment in PC12 cells under HO stimulation. Taken together, our study demonstrated that liraglutide could reduce apoptosis, improve functional recovery, and increase microtubule acetylation via autophagy stimulation after SCI. GLP-1R was associated with both the induction of autophagy and suppression of apoptosis in neuronal cultures.
Verbatim abstract via PubMed 29156769 ↗
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