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外周交感神经中α2受体对电生性钠/钙交换的调节

[Electrogenic Na+/Ca2+-exchange regulation by alpha2-receptor in peripheral sympathetic nerve].

作者信息

Török T L, Nagykáldi Zs, Sáska Zs, Kovács T, Nada S A, Zillikens S, Magyar K

机构信息

Semmelweis Egyetem Gyógyszerhatástani Intézete, Budapest.

出版信息

Acta Pharm Hung. 2005;75(1):3-16.

Abstract

Electrical depolarisation-(2 Hz, 1 ms)-induced [3H]noradrenaline ([3H]NA) release was measured from the isolated main pulmonary artery of the rabbit in the presence of uptake blockers (cocaine, 3 x 10(-5)M; corticosterone, 5 x 10(-5)M) and after blocking the MAO-enzyme by pargyline (1,2 x 10(-4)M). Substitution of most of the external Na+ by Li+ (113 mM; [Na+]0: 25 mM) slightly potentiated the stimulation-induced release of [3H]NA in a tetrodotoxin (TTX, 10(-7)M) sensitive manner. The reverse Na+/Ca2+-exchange inhibitor KB-R7943 (3 x 10(-5)M) failed to inhibit the stimulation-evoked release of [3H]NA, but increased the resting outflow of neurotransmitter. The 'N-type' voltage-sensitive Ca2+-channel (VSCC) blocker omega-conotoxin (omega-CgTx) GVIA (10(-8)M) significantly and irreversibly inhibited the release of [3H]NA on stimulation (approximately 60-70%). The 'residual release' of NA was abolished either by TTX or by reducing external Ca2+ from 2,5 to 0,25 mM. The 'residual release' of NA was also blocked by the non-selective VSCC-blocker neomycin (3 x 10(-3)M). Direct correlation was obtained between the extent of VSCC-inhibition and the transmitter release enhancing-effect of presynaptic alpha2-receptor blocker yohimbine (3 x 10(-7)M). When the release of [3H]NA was blocked by omega-CgTx GVIA plus neomycin, yohimbine was ineffective. Inhibition of the Na+-pump by removal of K+ from the external medium increased both the resting and the stimulation-evoked release of [3H]NA in the absence of functioning VSCCs (i.e. in the presence of neomycin and after omega-CgTx treatment). Under these conditions the stimulation-evoked release of NA was abolished either by TTX or by external Ca2+-removal (+1 mM EGTA). Similarly, external Li+ (113 mM) or the reverse Na+/Ca2+ exchange blocker KB-R7943 (3 x 10(-5)M) significantly inhibited the nerve-evoked release of NA in 'K+-free' solution. KB-R7943 decreased the resting outflow of NA as well. Under conditions, in which the Na+-pump was inhibited in the absence of functioning VSCCs, yohimbine (3 x 10(-7)M) further enhanced the release of neurotransmitter, while l-noradrenaline (l-NA, 10(-6)M), an agonist of presynaptic alpha2-receptors, inhibited it. The yohimbine-induced enhancement of NA-release was abolished by Li+-substitution and significantly inhibited by KB-R7943 application. It is concluded that after blockade of VSCCs, brief depolarising pulses may reverse Na+/Ca2+-exchange and release neurotransmitter in Na+-loaded sympathetic nerves. Further, similar to that of VSCCs, the reverse Na+/Ca2+-exchange may also be inhibited by presynaptic alpha2-receptor activation.

摘要

在存在摄取阻滞剂(可卡因,3×10⁻⁵M;皮质酮,5×10⁻⁵M)以及用优降宁(1.2×10⁻⁴M)阻断单胺氧化酶后,从兔离体主肺动脉测量电去极化(2Hz,1ms)诱导的[³H]去甲肾上腺素([³H]NA)释放。用Li⁺(113mM;[Na⁺]₀:25mM)替代大部分细胞外Na⁺,以河豚毒素(TTX,10⁻⁷M)敏感的方式轻微增强了刺激诱导的[³H]NA释放。反向Na⁺/Ca²⁺交换抑制剂KB-R7943(3×10⁻⁵M)未能抑制刺激诱发的[³H]NA释放,但增加了神经递质的静息流出量。“N型”电压敏感性Ca²⁺通道(VSCC)阻滞剂ω-芋螺毒素(ω-CgTx)GVIA(10⁻⁸M)显著且不可逆地抑制刺激时[³H]NA的释放(约60 - 70%)。NA的“残余释放”可被TTX或通过将细胞外Ca²⁺从2.5mM降至0.25mM而消除。NA的“残余释放”也被非选择性VSCC阻滞剂新霉素(3×10⁻³M)阻断。VSCC抑制程度与突触前α₂受体阻滞剂育亨宾(3×10⁻⁷M)的递质释放增强效应之间存在直接相关性。当[³H]NA的释放被ω-CgTx GVIA加新霉素阻断时,育亨宾无效。通过从细胞外培养基中去除K⁺抑制Na⁺泵,在不存在功能性VSCC(即在存在新霉素和经ω-CgTx处理后)的情况下增加了[³H]NA的静息和刺激诱发释放。在这些条件下,刺激诱发的NA释放可被TTX或通过去除细胞外Ca²⁺(+1mM EGTA)而消除。同样,在“无K⁺”溶液中,细胞外Li⁺(113mM)或反向Na⁺/Ca²⁺交换阻滞剂KB-R7943(3×10⁻⁵M)显著抑制神经诱发的NA释放。KB-R7943也降低了NA的静息流出量。在不存在功能性VSCC的情况下抑制Na⁺泵的条件下,育亨宾(3×10⁻⁷M)进一步增强神经递质的释放,而突触前α₂受体激动剂l-去甲肾上腺素(l-NA,10⁻⁶M)则抑制它。Li⁺替代消除了育亨宾诱导的NA释放增强,并且应用KB-R7943可显著抑制。结论是,在VSCC被阻断后,短暂的去极化脉冲可能会逆转Na⁺/Ca²⁺交换并在Na⁺负载的交感神经中释放神经递质。此外,与VSCC类似,反向Na⁺/Ca²⁺交换也可能被突触前α₂受体激活所抑制。

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