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Bucladesine Attenuates Spatial Learning and Hippocampal Mitochondrial Impairments Induced by 3,
Ghorban Taghizadeh1, Hajar Mehdizadeh2, Jalal Pourahmad3
1Rehabilitation Research Center, Department of Occupational Therapy, School of Rehabilitation Sciences, Iran University of Medical Sciences, Tehran, Iran.
Abstract:
Neurotoxic effects of systemic administration of 3, 4- methylenedioxymethamphetamine (MDMA) has been attributed to MDMA and its metabolites. However, the role of the parent compound in MDMA-induced mitochondrial and memory impairment has not yet been investigated. Moreover, it is not yet studied that analogs of 3', 5'-cyclic adenosine monophosphate (cAMP) could decrease these neurotoxic effects of MDMA. We wished to investigate the effects of the central administration of MDMA on spatial memory and mitochondrial function as well as the effects of bucladesine, a membrane-permeable analog of cAMP, on these effects of MDMA. We assessed the effects of pre-training bilateral intrahippocampal infusion of MDMA (0.01, 0.1, 0.5, and 1 μg/side), bucladesine (10 and 100 μM) or combination of them on spatial memory, and different parameters of hippocampal mitochondrial function including the level of reactive oxygen species (ROS) production, mitochondrial membrane potential (MMP), mitochondrial swelling, mitochondrial outer membrane damage, the amount of cytochrome c release as well as hippocampal ADP/ATP ratio. The results showed that MDMA caused spatial memory impairments as well as mitochondrial dysfunction as evidenced by the marked increase in hippocampal ADP/ATP ratio, ROS level, the collapse of MMP, mitochondrial swelling, and mitochondrial outer membrane damage leading to cytochrome c release from the mitochondria. The current study also found that bucladesine markedly reduced the destructive effects of MDMA. These results provide evidence of the role of the parent compound (MDMA) in MDMA-induced memory impairments through mitochondrial dysfunction. This study highlights the role of cAMP/PKA signaling in MDMA-induced memory and mitochondrial defects.
Insights
3,4-methylenedioxymethamphetamine (MDMA) impairs spatial memory and mitochondrial function. Bucladesine, a cyclic adenosine monophosphate (cAMP) analog, mitigated these neurotoxic effects, highlighting cAMP/PKA signaling
Area of Science:
- Neuroscience
- Pharmacology
- Cell Biology
Background:
- Systemic 3,4-methylenedioxymethamphetamine (MDMA) neurotoxicity is linked to MDMA and its metabolites.
- The specific role of the parent MDMA compound in mitochondrial and memory impairment remains uninvestigated.
- The potential neuroprotective effects of cyclic adenosine monophosphate (cAMP) analogs against MDMA's neurotoxicity are unknown.
Purpose of the Study:
- To investigate the central effects of MDMA on spatial memory and hippocampal mitochondrial function.
- To determine if bucladesine, a membrane-permeable cAMP analog, can counteract MDMA-induced neurotoxicity.
- To elucidate the role of cAMP/PKA signaling in MDMA-induced memory and mitochondrial deficits.
Main Methods:
- Bilateral intrahippocampal infusions of MDMA (0.01–1 μg/side) and bucladesine (10–100 μM) in rodents.
- Assessment of spatial memory performance.
- Evaluation of hippocampal mitochondrial function: reactive oxygen species (ROS) production, mitochondrial membrane potential (MMP), swelling, outer membrane damage, cytochrome c release, and ADP/ATP ratio.
Main Results:
- MDMA administration significantly impaired spatial memory and induced mitochondrial dysfunction.
- Observed mitochondrial dysfunction included increased ADP/ATP ratio, elevated ROS, collapsed MMP, swelling, and outer membrane damage with cytochrome c release.
- Bucladesine treatment markedly attenuated the neurotoxic and mitochondrial damaging effects of MDMA.
Conclusions:
- The parent MDMA compound plays a significant role in inducing memory impairments via mitochondrial dysfunction.
- cAMP/PKA signaling is implicated in the mechanisms underlying MDMA-induced memory deficits and mitochondrial damage.
- Bucladesine demonstrates potential as a therapeutic agent against MDMA neurotoxicity.
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