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树突状丝状伪足在突触发生和棘突形成中作用的证据。

Evidence for a role of dendritic filopodia in synaptogenesis and spine formation.

作者信息

Ziv N E, Smith S J

机构信息

Department of Molecular and Cellular Physiology, Stanford University Medical School, California 94305-5426, USA.

出版信息

Neuron. 1996 Jul;17(1):91-102. doi: 10.1016/s0896-6273(00)80283-4.

Abstract

Axo-dendritic synaptogenesis was examined in live hippocampal cell cultures using the fluorescent dyes DiO to label dendrites and FM 4-64 to label functional presynaptic boutons. As the first functional synaptic boutons appeared in these cultures, numerous filopodia (up to 10 micron long) were observed to extend transiently (mean lifetime 9.5 min) from dendritic shafts. With progressively increasing numbers of boutons, there were coincident decreases in numbers of transient filopodia and increases in numbers of stable dendritic spines. Dendritic filopodia were observed to initiate physical contacts with nearby axons. This sometimes resulted in filopodial stabilization and formation of functional presynaptic boutons. These findings suggest that dendritic filopodia may actively initiate synaptogenic contacts with nearby (5-10 micron) axons and thereafter evolve into dendritic spines.

摘要

使用荧光染料DiO标记树突,FM 4-64标记功能性突触前终扣,在活的海马细胞培养物中检测轴突-树突突触形成。随着这些培养物中出现第一批功能性突触前终扣,观察到许多丝状伪足(长达10微米)从树突干短暂伸出(平均寿命9.5分钟)。随着终扣数量逐渐增加,短暂丝状伪足数量同时减少,稳定树突棘数量增加。观察到树突丝状伪足与附近轴突开始发生物理接触。这有时会导致丝状伪足稳定并形成功能性突触前终扣。这些发现表明,树突丝状伪足可能主动与附近(5-10微米)轴突建立突触形成接触,随后演变成树突棘。

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