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新生期辣椒素处理调节大鼠大脑皮层桶状感觉区的经验依赖性可塑性。

Neonatal capsaicin treatment modulates experience-dependent plasticity in the rat barrel cortex.

机构信息

Neuroscience Research Center, University of Medical Sciences, Kerman, Iran.

出版信息

J Comp Neurol. 2010 Sep 1;518(17):3427-38. doi: 10.1002/cne.22384.

Abstract

Previous studies have reported that capsaicin-induced C-fiber depletion results in expansion of low threshold somatosensory mechanoreceptive fields. Here we used this paradigm to investigate its effect on experience-dependent plasticity in the barrel cortex of rats. All but the D2 vibrissa were first plucked on postnatal day 0 (P0), P5, or P8, and kept plucked for a period of 30 days before being allowed to regrow for 7-9 days prior to the recording session. To assess receptive field characteristics the spared D2 principal whisker (PW) and the deprived D1 adjacent whisker (AW) were moved either singly or in concert, neuronal responses being recorded in layers IV and V of the D2 barrel. In vehicle-treated rats, PW-evoked ON responses (layer IV) were increased only in those animals that first had their vibrissae plucked on P0, whereas AW-evoked ON responses (layers IV and V) were decreased in the P0, P5, and P8 groups. In the capsaicin-treated animals, PW-evoked ON responses (layer IV) were increased in all three groups, but no decrease was recorded in the AW-evoked ON (layers IV and V) responses. In the vehicle- and capsaicin-treated animals, the greatest decrease in inhibitory interactions was observed in the P5 and P0 groups, respectively. These findings indicate that, following the induction of experience-dependent plasticity, the resultant changes in excitatory and integrative circuits can be further influenced by C-fiber depletion.

摘要

先前的研究报告指出,辣椒素诱导的 C 纤维耗竭会导致低阈值体感机械感受器感受野的扩张。在这里,我们使用这种范式来研究它对大鼠 barrels 皮层中经验依赖性可塑性的影响。在记录会议之前,首先将除了 D2 振动外的所有振动都在出生后第 0 天(P0)、P5 或 P8 天拔除,并保持拔除 30 天,然后让其重新生长 7-9 天。为了评估感受野特征,保留的 D2 主要须毛(PW)和剥夺的 D1 相邻须毛(AW)单独或协同移动,记录 D2 桶层 IV 和 V 中的神经元反应。在载体处理的大鼠中,PW 诱发的 ON 反应(层 IV)仅在那些首先在 P0 天拔除振动的动物中增加,而 AW 诱发的 ON 反应(层 IV 和 V)在 P0、P5 和 P8 组中减少。在辣椒素处理的动物中,所有三组的 PW 诱发的 ON 反应(层 IV)均增加,但在 AW 诱发的 ON(层 IV 和 V)反应中未记录到减少。在载体和辣椒素处理的动物中,抑制相互作用的最大减少分别发生在 P5 和 P0 组。这些发现表明,在诱导经验依赖性可塑性后,兴奋性和整合性电路的变化可以进一步受到 C 纤维耗竭的影响。

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