Neuropathic pain (NP) is caused by a lesion that triggers pain chronification and central sensitization and it can develop in a different manner, dependent of age. Recent studies have demonstrated the efficacy of transcranial direct current stimulation (tDCS) for treating NP. Then, we aimed to investigate the effects of tDCS and BDNF levels in neuropathic pain rats in development, with 30 days old in the beginning of experiments. Eight-five male Wistar rats were subjected to chronic constriction injury. After establishment of NP, bimodal tDCS was applied to the rats for eight consecutive days, for 20 minutes each session. Subsequently, nociceptive behavior was assessed at baseline, 14 days after surgery, 1 day and 7 days after the end of tDCS. The rats were sacrificed 8 days after the last session of tDCS. An increase in the nociceptive threshold was observed in rats in development 1 day after the end of tDCS (short-term effect), but this effect was not maintained 7 days after the end of tDCS (long-term effect). Furthermore, brain derived neurotrophic factor (BDNF) levels were analyzed in the frontal cortex, spinal cord and serum using ELISA assays. The neuropathic pain model showed an effect of BDNF in the spinal cord of rats in development. There were no effects of BNDF levels of pain or tDCS in the frontal cortex or serum. In conclusion, tDCS is an effective technique to relieve nociceptive behavior at a short-term effect in neuropathic pain rats in development, and BDNF levels were not altered at long-term effect.
Short-term effectiveness of transcranial direct current stimulation in the nociceptive behavior of neuropathic pain rats in development.
经颅直流电刺激对发育期神经性疼痛大鼠伤害性行为的短期疗效
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作者:Crespo Priscila Centeno, Anderson Meira Martins Leo, Martins Otávio Garcia, Camacho Dos Reis Clara, Goulart Ricardo Netto, de Souza Andressa, Medeiros Liciane Fernandes, Scarabelot Vanessa Leal, Gamaro Giovana Duzzo, Silva Sabrina Pereira, de Oliveira Marcos Roberto, Torres Iraci Lucena da Silva, de Souza Izabel Cristina Custódio
| 期刊: | AIMS Neuroscience | 影响因子: | 2.700 |
| 时间: | 2023 | 起止号: | 2023 Dec 15; 10(4):433-446 |
| doi: | 10.3934/Neuroscience.2023032 | 种属: | Rat |
| 研究方向: | 发育与干细胞、神经科学 | ||
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