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Arch Iran Med. 2013;16(12): 0.
PMID: 24329142
Scopus ID: 84891653524
  Abstract View: 2180
  PDF Download: 1329

Original Article

Exercise Preconditioning Improves Behavioral Functions following Transient Cerebral Ischemia Induced by 4-Vessel Occlusion (4-VO) in Rats

Mahshid Tahamtan, Mohammad Allahtavakoli, Mehdi Abbasnejad, Ali Roohbakhsh, Zahra Taghipour, Mohsen Taghavi, Hassan Khodadadi, Ali Shamsizadeh*
*Corresponding Author: Email: alishamsy@gmail.com

Abstract

BACKGROUND: There is evidence that exercise decreases ischemia/reperfusion injury in rats. Since behavioral deficits are the main outcome in patients after stroke, our study was designed to investigate whether exercise preconditioning improves the acute behavioral functions and also brain inflammatory injury following cerebral ischemia.

METHODS: Male rats weighing 250–300 g were randomly allocated into five experimental groups. Exercise was performed on a treadmill 30min/day for 3 weeks. Ischemia was induced by 4-vessel occlusion method. Recognition memory was assessed by novel object recognition task (NORT) and step-through passive avoidance task. Sensorimotor function and motor movements were evaluated by adhesive removal test and ledged beam-walking test, respectively. Brain inflammatory injury was evaluated by histological assessment.

RESULTS: In NORT, the discrimination ratio was decreased after ischemia (P < 0.05) and exercise preconditioning improved it in ischemic animals. In the passive avoidance test, a significant reduction in response latency was observed in the ischemic group. Exercise preconditioning significantly decreased the response latency in the ischemic rats (P < 0.001). In the adhesive removal test, latency to touch and remove the sticky labels from forepaw was increased following induction of ischemia (all P < 0.001) and exercise preconditioning decreased these indices compared to the ischemic group (all P < 0.001). In the ledged beam-walking test, the slip ratio was increased following ischemia (P < 0.05). In the ischemia group, marked neuronal injury in hippocampus was observed. These neuropathological changes were attenuated by exercise preconditioning (P < 0.001).

CONCLUSION: Our results showed that exercise preconditioning improves behavioral functions and maintains more viable cells in the dorsal hippocampus of the ischemic brain.

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ePublished: 01 Dec 2013
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