4.5 Article

The brain metabolic enhancer methylene blue improves discrimination learning in rats

期刊

PHARMACOLOGY BIOCHEMISTRY AND BEHAVIOR
卷 86, 期 4, 页码 712-717

出版社

PERGAMON-ELSEVIER SCIENCE LTD
DOI: 10.1016/j.pbb.2007.02.018

关键词

methylene blue; memory retention; cytochrome oxidase; metabolic enhancer; spatial memory; discrimination learning

资金

  1. NIMH NIH HHS [T32 MH65728, T32 MH065728, T32 MH065728-05] Funding Source: Medline
  2. NINDS NIH HHS [R01 NS37755, R01 NS037755, R01 NS037755-08] Funding Source: Medline

向作者/读者索取更多资源

Methylene blue (MB) is a metabolic enhancer that has been demonstrated to improve memory retention when given post-training in low doses in a variety of tasks in rats, including inhibitory avoidance, spatial memory (in both normal and metabolically-impaired subjects), object recognition, and habituation to a familiar environment. MB has been also shown to improve memory retention of extinction of fear conditioning in the rat. No experiments have been conducted to determine the effects of MB on more complex learning such as in discrimination tasks that require repeated days of training. This study examined the effects of daily MB on spatial discrimination memory in a baited holeboard maze. Following three days of discrimination training, subjects treated daily with post-training MB (1 mg/kg) reliably discriminated between rewarded (baited) and non-rewarded (unbaited) trials as indicated by a greater number of correct responses on rewarded trials than non-rewarded trials during the last three days of discrimination training. No such discrimination effects were observed in the saline-treated control group during the same training period. To determine whether the memory-enhancing effects of MB are associated with an increase in metabolic energy capacity in the brain, cytochrome c oxidation was measured in brains from rats treated with 1 mg/kg MB or saline for three days. The number of daily injections was chosen based on the behavioral data which revealed group differences three days after the beginning of MB treatment. Brain cytochrome oxidase activity in the MB-treated group was approximately 70% higher than in saline-treated rats. The findings suggest that repeated post-training MB may improve memory consolidation between days of learning by an induction in the enzyme cytochrome oxidase, leading to increased metabolic capacity in brain regions requiring more energy during discrimination learning. (c) 2007 Elsevier Inc. All rights reserved.

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