Department of Experimental Medicine, Second University of Naples, Naples, Italy.
J Neurophysiol. 2009 Dec;102(6):3169-79. doi: 10.1152/jn.00124.2009. Epub 2009 Sep 23.
We have studied the involvement of the N-methyl-D-aspartate receptor (NMDAR) glycine site and the strychnine-sensitive glycine receptor (GlyR) in the ventrolateral periaqueductal gray (VL-PAG) on nociceptive behavior (tail flick) and pain-related changes on neuronal activity in the rostral ventromedial medulla (RVM). Glycine or D-serine increased the tail-flick latency, reduced OFF-cell pause, and delayed its onset and increased the time between the onset of the OFF-cell pause and the tail withdrawal. Conversely, they decreased the ongoing activity of the ON cell, the tail-flick-induced ON-cell firing, whereas they delayed the onset of increased tail-flick-induced ON-cell firing. Also, glycine or D-serine reduced the interval between the onset of the increased ON-cell firing and tail withdrawal. Whereas 7-Cl-kynurenic acid (7-Cl-KYN) prevented such effects, strychnine did not do so. A higher dose of 7-Cl-KYN or strychnine was per se able to reduce or increase tail-flick latency and increase or reduce ON-cell activities, respectively. A higher dose of glycine was hyperalgesic in the presence of 7-Cl-KYN, whereas such an effect was prevented by strychnine. These data suggest 1) a dual role of glycine in producing hyperalgesia or analgesia by stimulating the GlyR or the NMDARs within the VL-PAG, respectively; 2) consistently that RVM ON and OFF cells display opposite firing patterns to the stimulation of the VL-PAG NMDAR glycine site and GlyR activation; and 3) a tonic role of these receptors within the VL-PAG-RVM antinociceptive descending pathway.
我们研究了 N-甲基-D-天冬氨酸受体(NMDAR)甘氨酸位点和士的宁敏感甘氨酸受体(GlyR)在腹外侧导水管周围灰质(VL-PAG)中对伤害感受行为(尾巴摆动)和疼痛相关神经元活动变化的影响。甘氨酸或 D-丝氨酸增加尾巴摆动潜伏期,减少 OFF 细胞暂停,延迟其发作并增加 OFF 细胞暂停开始和尾巴缩回之间的时间。相反,它们降低了 ON 细胞的持续活动、尾巴摆动诱导的 ON 细胞放电,同时延迟了增加的尾巴摆动诱导的 ON 细胞放电的开始。此外,甘氨酸或 D-丝氨酸减少了增加的 ON 细胞放电开始和尾巴缩回之间的间隔。7-氯犬尿氨酸(7-Cl-KYN)可防止这种作用,但士的宁则不能。较高剂量的 7-Cl-KYN 或士的宁本身能够分别减少或增加尾巴摆动潜伏期并增加或减少 ON 细胞活动。在 7-Cl-KYN 存在下,较高剂量的甘氨酸具有痛觉过敏作用,而这种作用被士的宁所阻止。这些数据表明 1)甘氨酸在 VL-PAG 内通过刺激 GlyR 或 NMDAR 分别产生痛觉过敏或镇痛的双重作用;2)RVM ON 和 OFF 细胞对 VL-PAG NMDAR 甘氨酸位点和 GlyR 激活的刺激显示出相反的放电模式;3)这些受体在 VL-PAG-RVM 抗伤害下行通路中具有紧张作用。