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哺乳动物小脑切片中体外浦肯野细胞树突的电生理特性

Electrophysiological properties of in vitro Purkinje cell dendrites in mammalian cerebellar slices.

作者信息

Llinás R, Sugimori M

出版信息

J Physiol. 1980 Aug;305:197-213. doi: 10.1113/jphysiol.1980.sp013358.

Abstract
  1. Intradendritic recordings from Purkinje cells in vitro indicate that white matter stimulation produces large synaptic responses by the activation of the climbing fibre afferent, but antidromic potentials do not actively invade the dendritic tree. 2. Climbing fibre responses may be reversed in a manner similar to that observed at the somatic level. However, the reversal does not show the biphasicity often seen at somatic level. 3. Input resistance of these dendrites was found to range from 15 to 30 M omega. The non-linear properties seen at the somatic level for depolarizing currents are also encountered here. However, there seems to be less anomalous rectification. 4. Detailed analysis of repetitive firing of Purkinje cells elicited by outward DC current shows that, as in the case of the antidromic invasion, the fast somatic potentials (s.s.) do not invade the dendrite actively. However, the dendritic spike bursts (d.s.b.s) interposed between the s.s. potentials are most prominent at dendritic level. 5. Two types of voltage-dependent Ca responses were observed. At low stimulus level a plateau-like depolarization is accompanied by a prominent conductance change; further depolarization produces large dendritic action potentials. These two classes of response are TTX-resistant but are blocked by Cd, Co, Mn or D600, or by the removal of extracellular Ca. 6. Following blockage of the Ca conductance, plateau potentials produced by a non-inactivating Na conductance are observed mainly near the soma indicating that this voltage-dependent conductance is probably associated with the somatic membrane. 7. Spontaneous firing in Purkinje cell dendrites is very similar to that observed at the soma. However, the amplitude of these bursts is larger at dendritic level. It is further concluded that these TTX-insensitive spikes are generated at multiple sites along the dendritic tree. 8. Six ionic conductances seem to be involved in Purkinje cell electroresponsiveness: (a) an inactivating and (b) a non-inactivating Na conductance at or near the soma, (c) a spike- and (d) a plateau-generating Ca conductance, and (e) voltage-dependent and (f) Ca-dependent K currents. 9. The possible role of these conductances in Purkinje cell integration is discussed.
摘要
  1. 体外对浦肯野细胞进行树突内记录表明,白质刺激通过激活攀缘纤维传入产生大的突触反应,但逆向动作电位不会主动侵入树突树。2. 攀缘纤维反应可能以类似于在胞体水平观察到的方式发生反转。然而,这种反转并未表现出在胞体水平常见的双相性。3. 发现这些树突的输入电阻范围为15至30兆欧。在胞体水平观察到的去极化电流的非线性特性在这里也存在。然而,似乎反常整流较少。4. 对由外向直流电流引发的浦肯野细胞重复放电的详细分析表明,与逆向侵入的情况一样,快速的胞体电位(s.s.)不会主动侵入树突。然而,介于s.s.电位之间的树突棘爆发(d.s.b.s)在树突水平最为突出。5. 观察到两种类型的电压依赖性钙反应。在低刺激水平时,平台样去极化伴随着显著的电导变化;进一步去极化会产生大的树突动作电位。这两类反应对TTX有抗性,但可被镉、钴、锰或D600阻断,或通过去除细胞外钙而阻断。6. 在钙电导被阻断后,由非失活钠电导产生的平台电位主要在胞体附近观察到,这表明这种电压依赖性电导可能与胞体膜相关。7. 浦肯野细胞树突中的自发放电与在胞体处观察到的非常相似。然而,这些爆发的幅度在树突水平更大。进一步得出结论,这些对TTX不敏感的棘突是在沿树突树的多个位点产生的。8. 六种离子电导似乎参与了浦肯野细胞的电反应性:(a)一种失活的和(b)一种在胞体或其附近的非失活钠电导,(c)一种产生棘突的和(d)一种产生平台的钙电导,以及(e)电压依赖性和(f)钙依赖性钾电流。9. 讨论了这些电导在浦肯野细胞整合中的可能作用。

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