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一种在电生理控制下于体内进行的新型单细胞染色程序:用生物胞素或神经生物素对近细胞标记的丘脑细胞和其他中枢神经元进行形态功能特征研究。

A novel single-cell staining procedure performed in vivo under electrophysiological control: morpho-functional features of juxtacellularly labeled thalamic cells and other central neurons with biocytin or Neurobiotin.

作者信息

Pinault D

机构信息

Université Laval Centre de Recherche en Neurobiologie Hôpital de l'Enfant-Jésus, Quebec, Canada

出版信息

J Neurosci Methods. 1996 Apr;65(2):113-36. doi: 10.1016/0165-0270(95)00144-1.

Abstract

We describe a novel and very effective single-cell labeling method with unique advantages for revealing the axonal and dendritic fields of any extracellularly recorded neuron. This procedure involves the use of fine glass micro-pipettes (tip diameter: approximately 1 micron), which contain biocytin or Neurobiotin dissolved in a salt solution, for the simultaneous juxtacellular recording and tracer iontophoresis. Once a neuron is well-isolated and identified, low intensity (< 10 nA) positive-current pulses are injected by way of the micro-electrode such as to modulate its firing. Juxtacellular tracer iontophoresis may last as long as the cell electrophysiologically remains in good health, while determining some of its physiological properties. Control experiments, including the selective killing of previously injected cells, provide convincing evidence that it is the stained unit that was recorded and 'tickled' by the juxtamembranous iontophoretic pulses. Electrophysiological and histochemical data further show that neuronal filling could occur during an electrically induced, transient, physical micro-damage of a somatic or dendritic membrane patch. This simple, single-cell staining method has been used to label several types of rat brain neurons, including projection neurons and interneurons. Its success rate ( > 86%) far exceeds that obtained by direct intracellular injections of tracers as shown by the labeling of a large sample of 100 individual cells (from 115 attempts) in the thalamic reticular (Rt) nucleus of 33 rats. We thereby demonstrate that Rt cells project to restricted regions of a single thalamic nucleus, including anterior thalamic nuclei, and that the thalamus and Rt complex have reciprocal connections. The juxtacellular procedure thus represents an ideal directed single-cell labeling tool for determination of functional properties, for subsequent identification, for delineation of overall neuronal architecture and for tracing neuronal pathways, provided care is taken to avoid the possible drawbacks and pitfalls that are illustrated and discussed in the present paper.

摘要

我们描述了一种新颖且非常有效的单细胞标记方法,该方法在揭示任何细胞外记录神经元的轴突和树突场方面具有独特优势。此过程涉及使用细玻璃微吸管(尖端直径:约1微米),其中含有溶解在盐溶液中的生物素或神经生物素,用于同时进行近细胞记录和示踪剂离子电渗疗法。一旦神经元被良好分离并识别出来,就通过微电极注入低强度(<10 nA)的正电流脉冲以调节其放电。近细胞示踪剂离子电渗疗法可以持续到细胞在电生理上保持良好状态,同时确定其一些生理特性。包括选择性杀死先前注入细胞的对照实验提供了令人信服的证据,证明被标记的单元就是被近膜离子电渗脉冲记录并“激发”的细胞。电生理和组织化学数据进一步表明,在体细胞或树突膜片的电诱导、短暂物理微损伤过程中可能会发生神经元填充。这种简单的单细胞染色方法已被用于标记几种类型的大鼠脑神经元,包括投射神经元和中间神经元。其成功率(>86%)远远超过通过直接细胞内注射示踪剂获得的成功率,如在33只大鼠的丘脑网状(Rt)核中对100个单个细胞(来自115次尝试)的大样本进行标记所示。我们由此证明,Rt细胞投射到单个丘脑核的受限区域,包括丘脑前核,并且丘脑和Rt复合体具有相互连接。因此,近细胞程序代表了一种理想的定向单细胞标记工具,用于确定功能特性、后续识别、描绘整体神经元结构以及追踪神经元通路,前提是要注意避免本文中说明和讨论的可能缺点和陷阱。

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