Renno W M
Department of Anatomy, King Saud University, College of Medicine, Abha, Saudi Arabia.
Amino Acids. 1998;14(4):319-31. doi: 10.1007/BF01318851.
This study measured the release of glutamate (Glu) and aspartate (Asp) amino acid transmitters in the ventrocaudal compartment of the rat periaqueductal gray (PAG) following exposure to unilateral peripheral inflammation. The release of endogenous Glu and Asp from the rat ventrocaudal PAG was monitored with the microdialysis technique in unanesthetized, unrestrained rats. There was significant increase (1,300%) in the basal concentrations of Glu release in the 7 days Complete Freund's Adjuvant (CFA) treated group compared to 24 h mineral oil control group. Amino acid release was induced by infusing veratridine (75 microM, a sodium channel activator) directly through the 1 mm long dialysis probe. Perfusion of veratridine into the ventrocaudal PAG resulted in significant elevation of Glu and Asp amino acids. In the 24 h and 7 days CFA treated rats, veratridine-evoked release of Glu was significantly decreased in the lateral ventrocaudal PAG compared to control rats injected with mineral oil (CFA vehicle). The peak minus baseline concentrations of Glu in 24 h and 7 days CFA treated groups decreased 55.7% and 43.9%, respectively. In contrast, The basal and the peak minus baseline concentrations of Asp showed no significant change between control group and 24 h and 7 days CFA treated animals. The results provide direct evidence that Glu excitatory amino acid may be involved in nociception/nociception modulation pathway in the ventrocaudal PAG.
本研究测量了大鼠中脑导水管周围灰质(PAG)腹尾区在单侧外周炎症刺激后谷氨酸(Glu)和天冬氨酸(Asp)这两种氨基酸递质的释放情况。采用微透析技术,在未麻醉、未束缚的大鼠中监测大鼠腹尾区PAG内源性Glu和Asp的释放。与24小时矿物油对照组相比,在7天完全弗氏佐剂(CFA)处理组中,Glu释放的基础浓度显著增加(1300%)。通过1毫米长的透析探针直接注入藜芦碱(75微摩尔,一种钠通道激活剂)来诱导氨基酸释放。向腹尾区PAG灌注藜芦碱导致Glu和Asp氨基酸显著升高。在24小时和7天CFA处理的大鼠中,与注射矿物油的对照大鼠(CFA载体)相比,藜芦碱诱发的Glu在外侧腹尾区PAG的释放显著减少。24小时和7天CFA处理组中Glu的峰值减去基线浓度分别下降了55.7%和43.9%。相比之下,对照组与24小时和7天CFA处理动物之间,Asp的基础浓度以及峰值减去基线浓度均无显著变化。结果提供了直接证据,表明Glu兴奋性氨基酸可能参与了腹尾区PAG的伤害感受/伤害感受调制通路。