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持续性钠电流有助于药用水蛭心脏中间神经元的振荡活动。

A persistent sodium current contributes to oscillatory activity in heart interneurons of the medicinal leech.

作者信息

Opdyke C A, Calabrese R L

机构信息

Department of Biology, Emory University, Atlanta, GA 30322.

出版信息

J Comp Physiol A. 1994 Dec;175(6):781-9. doi: 10.1007/BF00191850.

Abstract
  1. Normal activity in bilateral pairs of heart interneurons, from ganglia 3 or 4, in the medicinal leech (Hirudo medicinalis) is antiphasic due to their reciprocally inhibitory connections. However, Ca(++)-free Co(++)-containing salines lead to synchronous oscillations in these neurons. 2. Internal TEA+ allows expression of full plateaus during Co++ induced oscillations in heart interneurons; these plateaus are not blocked by Cs+. Similar plateaus are also observed with internal TEA+ alone, but under these conditions activity in heart interneurons from ganglia 3 or 4 is antiphasic. 3. Plateaus in heart interneurons induced by Co++ and internal TEA+ involve a conductance increase. 4. A voltage-dependent inward current, IP, showing little inactivation, was isolated using single-electrode voltage-clamp in heart interneurons. This current is carried at least in part by Na+; the current is reduced when external Na+ is reduced and is carried by Li++ when substituted for Na+. 5. Calcium channel blockers such as La3+ and Co++ block neither the TEA+ induced plateaus nor IP, suggesting that Na+ is not using Ca++ channels. Moreover, IP is enhanced by Ca(++)-free CO(++)-containing salines. Thus, IP is correlated with the TEA(+)- and Co(++)-induced plateau behavior.
摘要
  1. 药用水蛭(医蛭)神经节3或4中双侧成对的心脏中间神经元的正常活动是反相的,这是由于它们相互抑制性连接。然而,不含钙但含钴的盐溶液会导致这些神经元同步振荡。2. 细胞内加入四乙铵(TEA+)可使心脏中间神经元在钴诱导的振荡过程中出现完整的平台期;这些平台期不受铯的阻断。单独使用细胞内TEA+时也观察到类似的平台期,但在这些条件下,神经节3或4的心脏中间神经元活动是反相的。3. 钴和细胞内TEA+诱导的心脏中间神经元平台期涉及电导增加。4. 使用单电极电压钳在心脏中间神经元中分离出一种电压依赖性内向电流IP,该电流几乎没有失活。这种电流至少部分由钠离子携带;当外部钠离子减少时电流减小,当用锂离子替代钠离子时电流由锂离子携带。5. 钙通道阻滞剂如镧离子(La3+)和钴离子(Co++)既不阻断TEA+诱导的平台期,也不阻断IP,这表明钠离子不通过钙通道。此外,不含钙但含钴的盐溶液会增强IP。因此,IP与TEA+和Co++诱导的平台期行为相关。

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