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HTDP-2,一种新型合成化合物,通过减少大鼠大脑皮质神经末梢电压依赖性 Ca²⁺内流来抑制谷氨酸释放。

HTDP-2, a new synthetic compound, inhibits glutamate release through reduction of voltage-dependent Ca²⁺ influx in rat cerebral cortex nerve terminals.

机构信息

Department of Anesthesiology, Far-Eastern Memorial Hospital, Pan-Chiao, Taiwan, ROC.

出版信息

Pharmacology. 2011;88(1-2):26-32. doi: 10.1159/000328774. Epub 2011 Jul 1.

Abstract

AIM

The present study was aimed at investigating the effect of trans-6-(4-chlorobutyl)-5-hydroxy-4-(phenylthio)-1-tosyl-5,6-dihydropyridine-2(1H)-one (HTDP-2), a novel synthetic compound, on the release of endogenous glutamate in rat cerebrocortical nerve terminals (synaptosomes) and exploring the possible mechanism.

METHODS

The release of glutamate was evoked by the K⁺ channel blocker 4-aminopyridine (4-AP) and measured by an on-line enzyme-coupled fluorimetric assay. We also used a membrane potential-sensitive dye to assay nerve terminal excitability and depolarization, and a Ca²⁺ indicator, Fura-2-acetoxymethyl ester, to monitor cytosolic Ca²⁺ concentrations (Ca²⁺).

RESULTS

HTDP-2 inhibited the release of glutamate evoked by 4-AP in a concentration-dependent manner. Inhibition of glutamate release by HTDP-2 was prevented by the chelating intraterminal Ca²⁺ ions, and by the vesicular transporter inhibitor bafilomycin A1, but was insensitive to the glutamate transporter inhibitor DL-threo-β-benzyloxyaspartate. HTDP-2 did not alter the resting synaptosomal membrane potential or 4-AP-mediated depolarization whereas it decreased the 4-AP-induced increase in Ca²⁺. Furthermore, the inhibitory effect of HTDP-2 on the evoked glutamate release was abolished by the N-, and P/Q-type Ca²⁺ channel blocker ω-conotoxin MVIIC, but not by the ryanodine receptor blocker dantrolene, or the mitochondrial Na⁺/Ca²⁺ exchanger blocker CGP37157.

CONCLUSION

Based on these results, we suggest that, in rat cerebrocortical nerve terminals, HTDP-2 decreases voltage-dependent Ca²⁺ channel activity and, in so doing, inhibits the evoked glutamate release.

摘要

目的

本研究旨在探讨新型合成化合物 trans-6-(4-氯丁基)-5-羟基-4-(苯硫基)-1-对甲苯磺酰基-5,6-二氢吡啶-2(1H)-酮(HTDP-2)对大鼠脑皮质神经末梢(突触体)内源性谷氨酸释放的影响,并探讨其可能的机制。

方法

采用 K⁺通道阻断剂 4-氨基吡啶(4-AP)诱发谷氨酸释放,并通过在线酶偶联荧光测定法进行测定。我们还使用膜电位敏感染料测定神经末梢兴奋性和去极化,以及 Ca²⁺指示剂 Fura-2-乙酰氧甲酯监测细胞浆 Ca²⁺浓度(Ca²⁺)。

结果

HTDP-2 呈浓度依赖性抑制 4-AP 诱发的谷氨酸释放。HTDP-2 对谷氨酸释放的抑制作用可被细胞内 Ca²⁺螯合剂和囊泡转运抑制剂巴弗洛霉素 A1 所阻断,但对谷氨酸转运抑制剂 DL-threo-β-苄氧基天冬氨酸不敏感。HTDP-2 不改变静息突触体膜电位或 4-AP 介导的去极化,但降低 4-AP 诱导的Ca²⁺增加。此外,N-型和 P/Q 型 Ca²⁺通道阻断剂 ω-芋螺毒素 MVIIC 可消除 HTDP-2 对诱发谷氨酸释放的抑制作用,但ryanodine 受体阻断剂 dantrolene 或线粒体 Na⁺/Ca²⁺交换体阻断剂 CGP37157 则不能消除其抑制作用。

结论

基于这些结果,我们认为 HTDP-2 降低电压依赖性 Ca²⁺通道活性,从而抑制大鼠脑皮质神经末梢中诱发的谷氨酸释放。

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