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成年大鼠中通过棘突取代和新突触形成实现的平行纤维-浦肯野细胞突触可塑性。

Plasticity of the parallel fiber-Purkinje cell synapse by spine takeover and new synapse formation in the adult rat.

作者信息

Chen S, Hillman D E

出版信息

Brain Res. 1982 May 27;240(2):205-20. doi: 10.1016/0006-8993(82)90217-7.

Abstract

Alteration in synaptic connectivity between Purkinje cell spines and parallel fibers of the cerebellum were studied following partial deafferentation of Purkinje cells in the the adult rat. Transection of parallel fibers by two lesions placed at a 1 mm interval on the folial crest were used to produce degeneration of these afferents. Ultrastructural analysis of synapses on Purkinje cell spines revealed degeneration with vacating of postsynaptic sites within 6 h. Reactive synaptogenesis as takeover of Purkinje cell spines by formation of new synapses from remaining parallel fibers occurred even before degenerating parallel fibers had vacated postsynaptic sites. This was accompanied by a marked increase in the number of dual innervations by reactive parallel fibers within one day. Some vacated postsynaptic sites were lost as indicated by a reduction in the number of synapses and others may have been taken over by newly formed synapses on spines. In addition, new synapses formed between the shafts of Purkinje cell branchlets and parallel fibers. Sprouting of parallel fibers occurred as small extensions without tubules while Purkinje cell spines reacted by forming elongated and multiple heads which contacted different parallel fibers. After 5 days degenerating boutons were rarely found. Enlarged spine heads were each capped by a proportionally enlarged parallel fiber bouton and joined by an elongated synaptic junction to parallel fibers. Some parallel fiber boutons were greatly enlarged and capped numerous profiles of spines. This study shows that formation of new pre- and postsynaptic sites takes precedence over reoccupation of original contacts and that multiple synapses on individual spines are being eliminated to give rise to single contacts with boutons. This elimination resulted in enlargement of synaptic contact areas between Purkinje cell spines and parallel fibers by taking over postsynaptic sites from some vacated and eliminated boutons.

摘要

在成年大鼠中,对浦肯野细胞进行部分去传入神经支配后,研究了小脑浦肯野细胞棘突与平行纤维之间突触连接的改变。通过在叶嵴上间隔1毫米放置两个损伤来横断平行纤维,以造成这些传入神经的变性。对浦肯野细胞棘突上突触的超微结构分析显示,在6小时内突触后位点出现变性并空出。即使在退化的平行纤维尚未空出突触后位点之前,就已经发生了反应性突触形成,即剩余的平行纤维形成新的突触来占据浦肯野细胞棘突。这伴随着反应性平行纤维在一天内双重支配数量的显著增加。一些空出的突触后位点由于突触数量减少而丢失,其他一些可能被棘突上新形成的突触所占据。此外,在浦肯野细胞小分支的轴突与平行纤维之间形成了新的突触。平行纤维的发芽表现为没有微管的小延伸,而浦肯野细胞棘突则通过形成细长且多个头部来做出反应,这些头部与不同的平行纤维接触。5天后,很少发现退化的终扣。扩大的棘突头部每个都被一个成比例扩大的平行纤维终扣覆盖,并通过一个细长的突触连接与平行纤维相连。一些平行纤维终扣大大扩大,并覆盖了许多棘突的轮廓。这项研究表明,新的突触前和突触后位点的形成优先于对原始接触的重新占据,并且单个棘突上的多个突触正在被消除,以形成与终扣的单一接触。这种消除通过从一些空出和消除的终扣接管突触后位点,导致浦肯野细胞棘突与平行纤维之间突触接触区域的扩大。

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