首页> 外文期刊>Cell Calcium: The International Interdisciplinary Forum for Research on Calcium >Dynamic and static calcium gradients inside large snail (Helix aspersa) neurones detected with calcium-sensitive microelectrodes.
【24h】

Dynamic and static calcium gradients inside large snail (Helix aspersa) neurones detected with calcium-sensitive microelectrodes.

机译:用钙敏感的微电极检测到大蜗牛(Helix aspersa)神经元内的动态和静态钙梯度。

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

We have used quartz Ca2+-sensitive microelectrodes (CASMs) in large voltage-clamped snail neurones to investigate the inward spread of Ca2+ after a brief depolarisation. Both steady state and [Ca2+]i transients changed with depth of penetration. When the CASM tip was within 20 microm of the far side of the cell the [Ca2+]i transient time to peak was 4.4+/-0.5s, rising to 14.7+/-0.7s at a distance of 80 microm. We estimate that the Ca2+ transients travelled centripetally at an average speed of 6 microm2 s(-1) and decreased in size by half over a distance of about 45 microm. Cyclopiazonic acid had little effect on the size and time to peak of Ca2+ transients but slowed their recovery significantly. This suggests that the endoplasmic reticulum curtails rather than reinforces the transients. Injecting the calcium buffer BAPTA made the Ca2+ transients more uniform in size and increased their times to peak and rates of recovery near the membrane. We have developed a computational model for the transients, which includes diffusion, uptake and Ca2+ extrusion. Good fits were obtained with a rather large apparent diffusion coefficient of about 90+/-20 microm2 s(-1).This may assist fast recovery by extrusion.
机译:我们已经在大电压钳制的蜗牛神经元中使用了石英Ca2 +敏感微电极(CASM),以研究短暂去极化后Ca2 +的向内扩散。稳态和[Ca2 +] i瞬变都随穿透深度而变化。当CASM尖端位于细胞远端的20微米之内时,[Ca2 +] i达到峰值的瞬态时间为4.4 +/- 0.5s,在80微米的距离处上升至14.7 +/- 0.7s。我们估计,Ca2 +瞬态以6 microm2 s(-1)的平均速度向心传播,并且在大约45 microm的距离上大小减小了一半。 Cyclopiazonic acid对Ca2 +瞬变的大小和达到峰值的时间影响很小,但显着减缓了它们的恢复。这表明内质网减少而不是增强瞬变。注入钙缓冲液BAPTA使Ca2 +瞬变的大小更均匀,并增加了到达峰值的时间和膜附近的恢复速率。我们已经为瞬态建立了计算模型,其中包括扩散,吸收和Ca2 +挤出。获得了良好的配合,表观扩散系数相当大,约为90 +/- 20 microm2 s(-1),这可能有助于通过挤出快速恢复。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号