Treadmill exercise alters ecstasy- induced long- term potentiation disruption in the hippocampus of male rats

Metabolic brain disease · 2017 · vol. 32(5) , pp. 1603–1607 · doi:10.1007/s11011-017-0046-9 · PMID:28612273
Lab / animal OA: closed
View on PubMed View at publisher
⚙ AI-generated summary by qwen3.7-flash, 2026-09-07 ⓘ

Treadmill exercise improves MDMA-induced long-term potentiation disruption in the rat hippocampus by increasing BDNF expression.

One-sentence paraphrase of the abstract; not a substitute for reading it. No clinical advice. How this works

Abstract

3, 4-methylenedioxymethamphetamine (MDMA) or ecstasy is a derivative of amphetamine that leads to long term potentiation (LTP) disruption in the hippocampal dentate gyrus (DG). Exercise has been accepted as a treatment for the improvement of neurodegenerative disease. Herein, the effects of exercise on the MDMA- induced neurotoxicity were assessed. Male Wistar rats received intraperitoneal injection of MDMA (10 mg/kg) and exercised for one month on a treadmill (Simultaneously or asynchronously with MDMA). LTP and expression of BDNF were assessed using electrophysiology and western blotting methods, respectively. MDMA attenuated the field excitatory post-synaptic potential (fEPSP) slope in comparison with the control group, whereas treadmill exercise increased this parameter when compared to MDMA group. Furthermore, BDNF expression significantly decreased in MDMA group and treadmill exercise could increase that. In conclusion, results of this study suggest that synchronous exercise is able to improve MDMA-induced LTP changes through increase of BDNF expression in the hippocampus of rats.

My notes (saved in your browser only)

MeSH descriptors

Hippocampus Long-Term Potentiation N-Methyl-3,4-methylenedioxyamphetamine Physical Conditioning, Animal Serotonin Agents Animals Brain-Derived Neurotrophic Factor Brain-Derived Neurotrophic Factor Brain-Derived Neurotrophic Factor Dentate Gyrus Dentate Gyrus Dentate Gyrus Excitatory Postsynaptic Potentials Excitatory Postsynaptic Potentials Excitatory Postsynaptic Potentials Hippocampus Hippocampus Hippocampus Long-Term Potentiation Male

Citation neighborhood (no data yet)

We don't have any in-corpus citations linked to this paper yet. The paper's references may be in our DB but unresolved to ``paper_id`` (resolution happens at ingest when the cited DOI matches a row we already have). Run the cross-source citation reconcile pass to retry.

Source provenance

europepmc
last seen: 2026-10-04T09:26:46.659050+00:00
pubmed
last seen: 2026-10-08T21:20:02.015990+00:00
unpaywall
last seen: 2026-10-10T06:25:47.132674+00:00