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BGP-15 alleviates LPS-induced depression-like behavior by promoting mitophagy
Qian Liu1, Jun-Ning Zhao1, Zhi-Ting Fang1
1Department of Pathophysiology, School of Basic Medicine, Key Laboratory of Education Ministry of China/Hubei Province for Neurological Disorders, Tongji Medical College, Huazhong University of Science and Technology, Wuhan 430030, China.
Abstract:
The high prevalence of major depressive disorder (MDD) frequently imposes severe constraints on psychosocial functioning and detrimentally impacts overall well-being. Despite the growing interest in the hypothesis of mitochondrial dysfunction, the precise mechanistic underpinnings and therapeutic strategies remain unclear and require further investigation. In this study, an MDD model was established in mice using lipopolysaccharide (LPS). Our research findings demonstrated that LPS exposure induced depressive-like behaviors and disrupted mitophagy by diminishing the mitochondrial levels of PINK1/Parkin in the brains of mice. Furthermore, LPS exposure evoked the activation of the NLRP3 inflammasome, accompanied by a notable elevation in the concentrations of pro-inflammatory factors (TNF-α, IL-1β, and IL-6). Additionally, neuronal apoptosis was stimulated through the JNK/p38 pathway. The administration of BGP-15 effectively nullified the impact of LPS, corresponding to the amelioration of depressive-like phenotypes and restoration of mitophagy, prevention of neuronal injury and inflammation, and suppression of reactive oxygen species (ROS)-mediated NLRP3 inflammasome activation. Furthermore, we elucidated the involvement of mitophagy in BGP-15-attenuated depressive-like behaviors using the inhibitors targeting autophagy (3-MA) and mitophagy (Mdivi-1). Notably, these inhibitors notably counteracted the antidepressant and anti-inflammatory effects exerted by BGP-15. Based on the research findings, it can be inferred that the antidepressant properties of BGP-15 in LPS-induced depressive-like behaviors could potentially be attributed to the involvement of the mitophagy pathway. These findings offer a potential novel therapeutic strategy for managing MDD.
Insights
This study shows that BGP-15 treatment reversed depression-like behaviors in mice by restoring mitophagy and reducing inflammation. This suggests BGP-15 may be a novel therapeutic for major depressive disorder (MDD).
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Major depressive disorder (MDD) significantly impairs psychosocial functioning and well-being.
- Mitochondrial dysfunction is implicated in MDD, but mechanisms and treatments are unclear.
- Lipopolysaccharide (LPS) exposure in mice models MDD, inducing depressive behaviors.
Purpose of the Study:
- To investigate the role of mitophagy in LPS-induced depressive-like behaviors.
- To evaluate the therapeutic potential of BGP-15 in an MDD mouse model.
- To elucidate the mechanisms underlying BGP-15's antidepressant effects.
Main Methods:
- Established an MDD mouse model using lipopolysaccharide (LPS).
- Assessed depressive-like behaviors, mitophagy markers (PINK1/Parkin), NLRP3 inflammasome activation, pro-inflammatory cytokines, neuronal apoptosis (JNK/p38 pathway), and reactive oxygen species (ROS).
- Administered BGP-15 and used autophagy/mitophagy inhibitors (3-MA, Mdivi-1) to study pathway involvement.
Main Results:
- LPS induced depressive behaviors, disrupted mitophagy, activated the NLRP3 inflammasome, increased inflammation, and stimulated neuronal apoptosis.
- BGP-15 treatment ameliorated depressive phenotypes, restored mitophagy, reduced inflammation, suppressed ROS-mediated NLRP3 activation, and prevented neuronal injury.
- Autophagy and mitophagy inhibitors counteracted BGP-15's antidepressant and anti-inflammatory effects, confirming mitophagy's role.
Conclusions:
- BGP-15 exhibits antidepressant properties in an LPS-induced MDD model.
- The antidepressant effects of BGP-15 are mediated through the restoration of mitophagy.
- BGP-15 represents a potential novel therapeutic strategy for major depressive disorder.
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