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起搏器电位是苹果螺颊神经节中癫痫样活动的生理基础。

Pacemaker potentials are the physiologic basis of epileptiform activity in the buccal ganglia of Helix pomatia.

作者信息

Altrup U

机构信息

Institute of Experimental Epileptology, University of Münster, Hüfferstr. 68, D-48149 Münster, Germany.

出版信息

Acta Biol Hung. 2004;55(1-4):261-8. doi: 10.1556/ABiol.55.2004.1-4.31.

Abstract

Mechanisms of epileptic activity in nervous systems were studied using the identified neurons B1 through B4 in the buccal ganglia of the snail Helix pomatia as a model system. Activities were recorded with intracellular microelectrodes. Epileptiform activity was induced by bath application of an epileptogenic drug (pentylenetetrazol: 1 mM to 40 mM, or etomidate: 0.1 mM to 1.0 mM). Epileptiform potentials recorded from the somata of neurons consisted of paroxysmal depolarization shifts (PDSs). With increasing concentration of an epileptogenic drug, pacemaker potentials in neuron B3 developed into PDS. Simultaneously several types of chemical post-synaptic potentials were suppressed in amplitude. Since on the one hand epileptic seizures only appear when PDS are synchronized in many neurons and since on the other hand synaptic potentials were found to be suppressed during epileptic conditions, mechanisms underlying neuronal synchronization were studied. Evidence was found that, under epileptogenic conditions only, neurons were synchronized by an non-synaptic release of substances. Strong depolarizations accompanied by an increase in intracellular calcium concentration are known to induce an unspecific exocytosis. Thus, an unspecific exocytosis from the dendrites of PDS-generating neurons probably appears under epileptic conditions and synchronizes neighbouring neurons.

摘要

利用蜗牛玛瑙螺颊神经节中已鉴定的神经元B1至B4作为模型系统,研究了神经系统中癫痫活动的机制。用细胞内微电极记录活动。通过在浴中施加致癫痫药物(戊四氮:1 mM至40 mM,或依托咪酯:0.1 mM至1.0 mM)诱导癫痫样活动。从神经元胞体记录到的癫痫样电位由阵发性去极化移位(PDS)组成。随着致癫痫药物浓度的增加,神经元B3中的起搏电位发展为PDS。同时,几种类型的化学突触后电位的幅度受到抑制。一方面,癫痫发作仅在许多神经元中的PDS同步时才出现,另一方面,在癫痫状态下发现突触电位受到抑制,因此研究了神经元同步的潜在机制。有证据表明,仅在致癫痫条件下,神经元通过非突触性物质释放实现同步。已知伴有细胞内钙浓度增加的强去极化会诱导非特异性胞吐作用。因此,在癫痫条件下,产生PDS的神经元的树突可能会出现非特异性胞吐作用,并使相邻神经元同步。

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