首页> 外文期刊>The Journal of Physiology >Generation of rhythmic patterns of activity by ventral interneurones in rat organotypic spinal slice culture.
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Generation of rhythmic patterns of activity by ventral interneurones in rat organotypic spinal slice culture.

机译:在大鼠器官型脊髓切片培养物中腹侧中间神经元产生节律性活动模式。

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1. In the presence of certain excitatory substances the rat isolated spinal cord generates rhythmic oscillations believed to be an in-built locomotor programme (fictive locomotion). However, it is unknown whether a long-term culture of the same tissue can express rhythmic activity. Such a simplified model system would provide useful data on the minimal circuitry involved and the cellular mechanisms mediating this phenomenon. For this purpose we performed patch clamp recording (under whole-cell voltage or current clamp conditions) from visually identified ventral horn interneurones of an organotypic slice culture of the rat spinal cord. 2. Ventral horn interneurones expressed rhythmic bursting when the extracellular [K+] was raised from 4 to 6-7 mM. Under voltage clamp this activity consisted of composite synaptic currents grouped into bursts lasting 0.9 +/- 0.5 s (2.8 +/- 1.5 s period) and was generated at network level as it was blocked by tetrodotoxin or low-Ca2+-high-Mg2+ solution and its periodicity was unchanged at different potential levels. 3. In current clamp mode bursting was usually observed as episodes comprising early depolarizing potentials followed by hyperpolarizing events with tight temporal patterning. Bursting was fully suppressed by 6-cyano-7-nitroquinoxaline-2,3-dione (CNQX) and reduced in amplitude and duration by N-methyl-D-aspartate (NMDA) receptor antagonism without change in periodicity. Extracellular field recording showed bursting activity over a wide area of the ventral horn. 4. Regular, rhythmic activity similar to that induced by K+ also appeared spontaneously in Mg2+-free solution. The much slower rhythmic pattern induced by strychnine and bicuculline was also accelerated by high-K+ solution. 5. The fast and regular rhythmic activity of interneurones in the spinal organotypic culture is a novel observation which suggests that the oversimplified circuit present in this culture is a useful model for investigating spinal rhythmic activity.
机译:1.在存在某些兴奋性物质的情况下,大鼠分离出的脊髓会产生节律性振荡,这被认为是内置的运动程序(虚拟运动)。但是,相同组织的长期培养是否可以表达节律性活动尚不清楚。这种简化的模型系统将提供有关最小电路和介导此现象的细胞机制的有用数据。为了这个目的,我们从大鼠脊髓器官型切片培养物的视觉识别的腹角内神经元进行了膜片钳记录(在全细胞电压或电流钳条件下)。 2.当细胞外[K +]从4增加到6-7 mM时,腹角间神经元表达有节奏的爆发。在电压钳制下,此活动由复合突触电流组成,这些突触电流分为持续0.9 +/- 0.5 s(周期2.8 +/- 1.5 s)的突发,并在网络水平上产生,因为它被河豚毒素或低Ca2 +-高Mg2 +溶液阻断并且其周期性在不同的潜在水平上保持不变。 3.在电流钳模式下,通常观察到爆发,其发作包括早期的去极化电位,随后是具有紧密时间模式的超极化事件。爆裂被6-氰基-7-硝基喹喔啉-2,3-二酮(CNQX)完全抑制,而N-甲基-D-天门冬氨酸(NMDA)受体拮抗作用在幅度和持续时间上均得到降低,而没有周期性变化。细胞外场记录显示在腹角的宽阔区域上爆发活动。 4.在不含Mg2 +的溶液中,自发地出现类似于K +诱导的规律的节律性活动。高K +溶液也加速了士的宁和双瓜氨酸诱导的节奏变慢。 5.脊髓器官型培养物中interneurones的快速且有规律的节律活动是一个新颖的观察结果,提示这种文化中存在的过度简化的回路是研究脊髓节律活动的有用模型。

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