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Long-Term Potentiation of Prelimbic Cortex Ascribed to Heat-Sensitization Responses of Moxibustion. | LitMetric

AI Article Synopsis

  • Certain patients exhibited heat-sensitization responses to suspended moxibustion, suggesting that the treatment may be more effective for them than for those without this response.
  • Previous studies using fMRI and EEG indicated that these responses correlate with activity changes in key brain regions, particularly the prefrontal cortex.
  • The current research found that these heat-sensitization responses enhance phosphorylation of Cofilin in the prelimbic cortex of stroke rats, indicating that moxibustion might contribute to long-term synaptic changes in this area.

Article Abstract

Heat-sensitization responses occurred in certain patients while exposed to suspended moxibustion. The response often indicated that the efficacy of moxibustion to those with it tended to triumph over those without. However, its mechanism remains to be explained. Our previous fMRI and EEG studies confirmed the changes of activities in cerebral certain regions accompanied with heat-sensitization responses, especially in prefrontal cortex. Therefore, we hypothesize that neurological system is involved in moxibustion-induced heat-sensitization responses. In the present study, phosphorylation of Cofilin representing long-term potentiation in synapse of prelimbic cortex of medial prefrontal cortex in stroke rats over suspended moxibustion was assessed, and the size of phosphorylated Cofilin positive spine in synapse was also measured. The result showed that heat-sensitization responses were observed to augment cerebral ischemic stroke-induced phosphorylation of Cofilin in prelimbic cortex of rats and increase the numbers of large synapses. This indicated that long-term potentiation of prelimbic cortex was attributed to heat-sensitization responses that were certain neurological responses of medial prefrontal cortex to suspended moxibustion.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC6683778PMC
http://dx.doi.org/10.1155/2019/9465181DOI Listing

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