PLoS ONE (Jan 2012)

Effects of diet and/or exercise in enhancing spinal cord sensorimotor learning.

  • M Selvan Joseph,
  • Zhe Ying,
  • Yumei Zhuang,
  • Hui Zhong,
  • Aiguo Wu,
  • Harsharan S Bhatia,
  • Rusvelda Cruz,
  • Niranjala J K Tillakaratne,
  • Roland R Roy,
  • V Reggie Edgerton,
  • Fernando Gomez-Pinilla

DOI
https://doi.org/10.1371/journal.pone.0041288
Journal volume & issue
Vol. 7, no. 7
p. e41288

Abstract

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Given that the spinal cord is capable of learning sensorimotor tasks and that dietary interventions can influence learning involving supraspinal centers, we asked whether the presence of omega-3 fatty acid docosahexaenoic acid (DHA) and the curry spice curcumin (Cur) by themselves or in combination with voluntary exercise could affect spinal cord learning in adult spinal mice. Using an instrumental learning paradigm to assess spinal learning we observed that mice fed a diet containing DHA/Cur performed better in the spinal learning paradigm than mice fed a diet deficient in DHA/Cur. The enhanced performance was accompanied by increases in the mRNA levels of molecular markers of learning, i.e., BDNF, CREB, CaMKII, and syntaxin 3. Concurrent exposure to exercise was complementary to the dietary treatment effects on spinal learning. The diet containing DHA/Cur resulted in higher levels of DHA and lower levels of omega-6 fatty acid arachidonic acid (AA) in the spinal cord than the diet deficient in DHA/Cur. The level of spinal learning was inversely related to the ratio of AA:DHA. These results emphasize the capacity of select dietary factors and exercise to foster spinal cord learning. Given the non-invasiveness and safety of the modulation of diet and exercise, these interventions should be considered in light of their potential to enhance relearning of sensorimotor tasks during rehabilitative training paradigms after a spinal cord injury.