Institute of Neurophysiology, University of Cologne, Köln, Germany.
Curr Eye Res. 2010 Apr;35(4):322-34. doi: 10.3109/02713680903509410.
NiCl(2) (15 microM) enhances the ERG b-wave amplitude of vertebrate retina, up to 1.5-fold by blocking E/R-type voltage-gated Ca(2+) channels, which is mediated by blocking the release of GABA onto ionotropic GABA-A and GABA-C receptors. In vivo, it is likely that zinc, rather than nickel ions, may be involved in the modulation of retinal signalling. Therefore, we tested the effect of both, ZnCl(2) (10 to 500 microM) and DEDTC (100 to 500 microM), which chelates zinc ions for the capacity to influence the ERG b-wave amplitude.
Transretinal potentials from the isolated bovine retina were recorded as electroretinograms and Ca(2+) inward currents by patch-clamp recordings of stably Ca(v)2.3 transfected HEK-293 cells, yielding an IC(50) value of 5.3 microM for ZnCl(2).
ZnCl(2) (10-15 microM) increased the b-wave amplitude by 1.52-fold +/- 0.12 (n = 6 retinas), which was partially reversible upon washout. The same 1.5-fold stimulation of the b-wave amplitude was reported recently for 15 microM NiCl(2). The superfusion of isolated retinas by DEDTC (100 microM) caused a transient decrease of the ERG b-wave amplitude (0.75-fold +/- 0.06; n = 4), suggesting that the co-secretion of Zn(2+) ions may occur under scotopic conditions.
The stimulatory effect of ZnCl(2) on the ERG b-wave amplitude resembles the stimulatory effect of NiCl(2) and may be mediated rather by the NiCl(2)-sensitive, Ca(v)2.3 E-/R-type voltage-gated Ca(2+) channels than by NiCl(2)-sensitive T-type channels.
NiCl₂(15μM)通过阻断 E/R 型电压门控 Ca²⁺通道,将脊椎动物视网膜的 ERG b 波振幅提高至 1.5 倍,该通道通过阻断 GABA 对离子型 GABA-A 和 GABA-C 受体的释放来介导。在体内,锌离子而不是镍离子可能参与了视网膜信号的调节。因此,我们测试了 ZnCl₂(10 至 500μM)和 DEDTC(100 至 500μM)的作用,这两种物质都可以螯合锌离子,从而影响 ERG b 波振幅。
通过视网膜片钳记录稳定转染 Ca(v)2.3 的 HEK-293 细胞的 Ca²⁺内流电流,从分离的牛视网膜记录视网膜电图,得到 ZnCl₂的 IC₅₀值为 5.3μM。
ZnCl₂(10-15μM)使 b 波振幅增加 1.52 倍±0.12(n=6 只视网膜),洗脱后部分可逆。最近有报道称,15μM NiCl₂可使 b 波振幅增加 1.5 倍。100μM DEDTC 对分离视网膜的超滤液使 ERG b 波振幅短暂下降(0.75 倍±0.06;n=4),提示在暗条件下可能会共同分泌 Zn²⁺离子。
ZnCl₂对 ERG b 波振幅的刺激作用类似于 NiCl₂的刺激作用,而可能是通过 NiCl₂敏感的 Ca(v)2.3 E/R 型电压门控 Ca²⁺通道而不是 NiCl₂敏感的 T 型通道介导的。