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大鼠海马体中从CA3锥体细胞到齿状篮状细胞的突触输入。

Synaptic input from CA3 pyramidal cells to dentate basket cells in rat hippocampus.

作者信息

Kneisler T B, Dingledine R

机构信息

Department of Pharmacology, Emory University, Atlanta, GA 30322, USA.

出版信息

J Physiol. 1995 Aug 15;487(1):125-46. doi: 10.1113/jphysiol.1995.sp020866.

Abstract
  1. Excitatory inputs from CA3 pyramidal cells to dentate basket cells were examined using the whole-cell recording technique in neonatal (10-16 days) rat hippocampal slices to characterize this unexpected feedback pathway. 2. Minimal electrical stimulation of the CA3 pyramidal layer evoked in basket cells short latency (5.2 +/- 0.4 ms) glutamate receptor-mediated excitatory postsynaptic currents (EPSCs) with fast rise times (at -70 mV, 0.9 +/- 0.2 ms), fast decay time constants (3.6 +/- 0.6 ms), and small amplitudes (-14 +/- 3.4 pA). Minimal electrical stimulation evoked monosynaptic EPSCs in only 48 +/- 9.2% of the trials suggesting that the CA3 pyramidal cell to basket cell pathway was unreliable. 3. CA3 pyramidal cell layer stimulation did not antidromically or synaptically activate granule cells but did evoke polysynaptic IPSCs in granule cells, suggesting that the net effect of CA3 pyramidal cell firing on the dentate gyrus was granule cell inhibition. 4. Stimulation of the CA3 pyramidal cell layer evoked both monosynaptic and polysynaptic EPSCs in basket cells, which were eliminated by a knife lesion separating CA3 from the dentate gyrus. The latencies of the EPSCs evoked in 0.6 mM extracellular calcium were the same as the earliest latencies of EPSCs in 1.5 mM calcium, suggesting that those EPSCs were monosynaptic. The polysynaptic input was more prominent in the presence of 10 microM bicuculline, implying that inhibitory GABAergic circuits normally limit this feedback from CA3 to basket cells. 5. In recordings from 103 pairs of CA3 pyramidal cells and dentate basket cells from 11 slices, two polysynaptic connections were found that were active only when the presynaptic CA3 pyramidal neuron fired in bursts. No monosynaptic connections between CA3 pyramidal cells and basket cells were identified indicating that connections between the two cell types may be sparse. 6. Raising the external potassium concentration from 3.5 to 8.5 mM, which elicited burst firing in CA3 pyramidal cells, resulted in a barrage of EPSCs and action potentials in basket cells. In contrast, granule cells neither fired action potentials nor exhibited increased EPSC frequency in elevated potassium but instead received a higher frequency of bicuculline-sensitive IPSCs, consistent with interneuron firing. The CA3 pyramidal cell to basket cell monosynaptic pathway exhibited paired-pulse facilitation as manifested by an increased probability of release, which supports the idea that basket cells were better activated by short trains of action potentials than by single inputs.(ABSTRACT TRUNCATED AT 400 WORDS)
摘要
  1. 采用全细胞记录技术,在新生(10 - 16天)大鼠海马脑片中检测从CA3锥体细胞到齿状篮状细胞的兴奋性输入,以表征这条意外的反馈通路。2. 对CA3锥体细胞层进行最小电刺激,在篮状细胞中诱发了潜伏期短(5.2±0.4毫秒)的谷氨酸受体介导的兴奋性突触后电流(EPSCs),其上升时间快(在-70毫伏时为0.9±0.2毫秒),衰减时间常数快(3.6±0.6毫秒),且幅度小(-14±3.4皮安)。在仅48±9.2%的试验中,最小电刺激诱发了单突触EPSCs,这表明CA3锥体细胞到篮状细胞的通路不可靠。3. CA3锥体细胞层刺激并未逆向或突触激活颗粒细胞,但确实在颗粒细胞中诱发了多突触抑制性突触后电流(IPSCs),这表明CA3锥体细胞放电对齿状回的净效应是颗粒细胞抑制。4. 刺激CA3锥体细胞层在篮状细胞中诱发了单突触和多突触EPSCs,但通过将CA3与齿状回分离的刀伤可消除这些电流。在0.6毫摩尔细胞外钙中诱发的EPSCs潜伏期与在1.5毫摩尔钙中EPSCs的最早潜伏期相同,这表明那些EPSCs是单突触的。在存在10微摩尔荷包牡丹碱的情况下,多突触输入更为突出,这意味着抑制性GABA能回路通常会限制从CA3到篮状细胞的这种反馈。5. 在来自11个脑片的103对CA3锥体细胞和齿状篮状细胞的记录中,发现了两条多突触连接,它们仅在突触前CA3锥体细胞爆发式放电时才活跃。未发现CA3锥体细胞与篮状细胞之间的单突触连接,这表明这两种细胞类型之间的连接可能很稀疏。6. 将细胞外钾浓度从3.5毫摩尔提高到8.5毫摩尔,这会引发CA3锥体细胞的爆发式放电,导致篮状细胞中出现一连串的EPSCs和动作电位。相比之下,在高钾环境中颗粒细胞既不产生动作电位,也未表现出EPSC频率增加,而是接收到更高频率的荷包牡丹碱敏感的IPSCs,这与中间神经元放电一致。CA3锥体细胞到篮状细胞的单突触通路表现出双脉冲易化,表现为释放概率增加,这支持了篮状细胞通过短串动作电位比通过单个输入能更好地被激活的观点。(摘要截断于400字)
https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c62/1156604/7ebf1a222090/jphysiol00311-0132-a.jpg

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