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发育中小鼠浦肯野细胞中攀缘纤维支配场的钠成像。

Sodium imaging of climbing fiber innervation fields in developing mouse Purkinje cells.

作者信息

Scelfo Bibiana, Strata Piergiorgio, Knöpfel Thomas

机构信息

Laboratory for Neuronal Circuit Dynamics, Brain Science Institute, RIKEN, 2-1 Hirosawa, Wako-Shi, Saitama 351-0198, Japan.

出版信息

J Neurophysiol. 2003 May;89(5):2555-63. doi: 10.1152/jn.00884.2002. Epub 2003 Jan 29.

Abstract

Maturation of specific neuronal connections in the mature nervous system includes elimination of redundant synapses formed earlier during development. In the cerebellum of adult animals, each Purkinje cell (PC) is innervated by a single climbing fiber (CF). In early postnatal development each PC is innervated by multiple CFs and elimination of synapses formed by supernumerary CFs occurs until monoinnervation is established at around postnatal day 20 (P20) in mice. It is not clear whether multiple CFs, or only a single CF, translocate from the cell body of immature PCs to the developing dendrite and, in case several CFs translocate, whether they share or segregate their innervation fields. To localize CF innervation fields, we imaged changes in postsynaptic sodium concentration resulting from CF-mediated postsynaptic currents. We found that more than one CF translocates from an innervation field on the cell body of the PC to the developing dendrite and that these CFs share rather than segregate their innervation fields. We concluded that both the soma and the proximal dendrite of the PC are territories of competition for the developing CFs and that the overlapping of their termination fields may be the prerequisite for a local process of elimination of all but one CF, as previously demonstrated in the developing neuromuscular junction.

摘要

成熟神经系统中特定神经元连接的成熟包括消除发育早期形成的冗余突触。在成年动物的小脑中,每个浦肯野细胞(PC)仅由一条攀缘纤维(CF)支配。在出生后早期发育阶段,每个PC由多条CF支配,多余CF形成的突触会逐渐消除,直到小鼠出生后第20天左右(P20)建立单一支配。目前尚不清楚是多条CF,还是仅一条CF从未成熟PC的细胞体转移至发育中的树突,如果有几条CF发生转移,它们是共享还是分隔其支配区域。为了定位CF的支配区域,我们对CF介导的突触后电流引起的突触后钠浓度变化进行了成像。我们发现,不止一条CF从PC细胞体上的一个支配区域转移至发育中的树突,并且这些CF共享而非分隔其支配区域。我们得出结论,PC的细胞体和近端树突都是发育中CF竞争的区域,并且它们终止区域的重叠可能是除一条CF外所有CF局部消除过程的先决条件,正如之前在发育中的神经肌肉接头中所证明的那样。

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