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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Na+-dependent sources of intra-axonal Ca2+ release in rat optic nerve during in vitro chemical ischemia.
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Na+-dependent sources of intra-axonal Ca2+ release in rat optic nerve during in vitro chemical ischemia.

机译:在体外化学缺血过程中,大鼠视神经中轴突内Ca2 +释放的Na +依赖性来源。

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摘要

The contribution of intracellular stores to axonal Ca2+ overload during chemical ischemia in vitro was examined by confocal microscopy. Ca2+ accumulation was measured by fluo-4 dextran (low-affinity dye, KD approximately 4 microM) or by Oregon Green 488 BAPTA-1 dextran (highaffinity dye, KD approximately 450 nM). Axonal Na+ was measured using CoroNa Green. Ischemia in CSF containing 2 mM Ca2+ caused an approximately 3.5-fold increase in fluo-4 emission after 30 min, indicating a large axonal Ca2+ rise well into the micromolar range. Axonal Na+ accumulation was enhanced by veratridine and reduced, but not abolished, by TTX. Ischemia in Ca2+-free (plus BAPTA) perfusate resulted in a smaller but consistent Ca2+ increase monitored by Oregon Green 488 BAPTA-1, indicating release from intracellular sources. This release was eliminated in large part when Na+ influx was reduced by replacement with N-methyl-D-glucamine (NMDG+; even in depolarizing high K+ perfusate), Li+, or by the application of TTX and significantly increased by veratridine. Intracellular release also was reduced significantly by neomycin or 1-(6-[(17beta-methoxyestra-1,3,5 [10]-trien-17-yl) amino] hexyl)-1H-pyrrole-2,5-dione (U73122 [GenBank]) (phospholipase C inhibitors), heparin [inositol trisphosphate (IP3) receptor blocker], or 7-chloro-5-(2-chlorophenyl)-1,5-dihydro-4,1-benzothiazepin-2(3H)-one (CGP37157; mitochondrial Na+/Ca2+ exchange inhibitor) as well as ryanodine. Combining CGP37157 with U73122 [GenBank] or heparin decreased the response more than either agent alone and significantly improved electrophysiological recovery. Our conclusion is that intra-axonal Ca2+ release during ischemia in rat optic nerve is mainly dependent on Na+ influx. This Na+ accumulation stimulates three distinct intra-axonal sources of Ca2+: (1) the mitochondrial Na+/Ca2+ exchanger driven in the Na+ import/Ca2+ export mode, (2) positive modulation of ryanodine receptors, and (3) promotion of IP3 generation by phospholipase C.
机译:共聚焦显微镜检查了体外化学缺血过程中细胞内储存对轴突Ca 2+超负荷的贡献。 Ca 2+的积聚通过fluo-4葡聚糖(低亲和力染料,KD约为4 microM)或通过Oregon Green 488 BAPTA-1葡聚糖(高亲和力染料,KD约为450 nM)测量。使用CoroNa Green测量轴突Na +。在30分钟后,含有2 mM Ca2 +的CSF中的缺血导致fluo-4发射增加约3.5倍,这表明轴突Ca2 +大量上升至微摩尔范围。藜芦碱可增强轴突的Na +积累,而TTX可以减少但不能消除轴突Na +的积累。不含Ca2 +(加BAPTA)的灌流液中的缺血导致Oregon Green 488 BAPTA-1监测到较小但稳定的Ca2 +增加,表明从细胞内来源释放。当通过用N-甲基-D-葡糖胺(NMDG +;甚至在去极化高K +灌注液中去极化),Li +或通过施用TTX减少Na +流入量而被NaCl大量减少时,该释放被消除。新霉素或1-(6-[(17β-甲氧基estra-1,3,5 [10] -trien-17-yl)氨基]己基)-1H-吡咯-2,5-二酮( U73122 [GenBank])(磷脂酶C抑制剂),肝素[肌醇三磷酸(IP3)受体阻滞剂]或7-氯-5-(2-氯苯基)-1,5-二氢-4,1-苯并噻嗪-2(3H) (CGP37157;线粒体Na + / Ca2 +交换抑制剂)和ryanodine。将CGP37157与U73122 [GenBank]或肝素组合使用比单独使用任何一种药物都能降低反应,并显着改善电生理恢复。我们的结论是大鼠视神经缺血期间轴突内Ca2 +的释放主要取决于Na +的流入。这种Na +积累刺激了Ca2 +的三个轴突内部来源:(1)以Na +导入/ Ca2 +导出模式驱动的线粒体Na + / Ca2 +交换子;(2)ryanodine受体的正调制;以及(3)通过以下方式促进IP3的产生磷脂酶C.

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