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Sensitivity to theta-burst timing permits LTP in dorsal striatal adult brain slice

机译:对theta-burst时序的敏感性允许LTP在成人纹状体背侧脑片中

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摘要

Long-term potentiation (LTP) of excitatory afferents to the dorsal striatum likely occurs with learning to encode new skills and habits, yet corticostriatal LTP is challenging to evoke reliably in brain slice under physiological conditions. Here we test the hypothesis that stimulating striatal afferents with theta-burst timing, similar to recently reported in vivo temporal patterns corresponding to learning, evokes LTP. Recording from adult mouse brain slice extracellularly in 1 mM Mg2+, we find LTP in dorsomedial and dorsolateral striatum is preferentially evoked by certain theta-burst patterns. In particular, we demonstrate that greater LTP is produced using moderate intraburst and high theta-range frequencies, and that pauses separating bursts of stimuli are critical for LTP induction. By altering temporal pattern alone, we illustrate the importance of burst-patterning for LTP induction and demonstrate that corticostriatal long-term depression is evoked in the same preparation. In accord with prior studies, LTP is greatest in dorsomedial striatum and relies on N-methyl-d-aspartate receptors. We also demonstrate a requirement for both Gq- and Gs/olf-coupled pathways, as well as several kinases associated with memory storage: PKC, PKA, and ERK. Our data build on previous reports of activity-directed plasticity by identifying effective values for distinct temporal parameters in variants of theta-burst LTP induction paradigms. We conclude that those variants which best match reports of striatal activity during learning behavior are most successful in evoking dorsal striatal LTP in adult brain slice without altering artificial cerebrospinal fluid. Future application of this approach will enable diverse investigations of plasticity serving striatal-based learning.
机译:学习编码新技能和新习惯可能会导致兴奋性传入纹状体的长时程增强(LTP),但在生理条件下,皮质口LTP难以可靠地唤起大脑切片。在这里,我们测试一种假设,即用theta-burst时机刺激纹状体传入,类似于最近报道的与学习相对应的体内时间模式,会引起LTP。从成年小鼠脑片在1 mM Mg 2 + 的细胞外记录,我们发现在背侧纹状体和背外侧纹状体中的LTP优先通过某些theta-burst模式引起。特别是,我们证明使用中等爆发力和高theta-range频率会产生更大的LTP,并且暂停分开的刺激爆发对于LTP诱导至关重要。通过单独改变时间模式,我们说明了突发模式对LTP诱导的重要性,并证明了在相同的准备中诱发了皮质骨皮质长期抑郁症。根据先前的研究,LTP在背纹状体纹状体中最大,并且依赖于N-甲基-d-天冬氨酸受体。我们还证明了对Gq和Gs / olf偶联途径的需求,以及与记忆存储相关的几种激酶:PKC,PKA和ERK。我们的数据建立在以前的活动导向可塑性报告基础上,通过确定theta-burst LTP诱导范例变体中不同时间参数的有效值。我们得出的结论是,那些与学习行为期间纹状体活动的报道最匹配的变异体最成功地诱发了成年人脑片背侧纹状体LTP,而没有改变人工脑脊液。这种方法的未来应用将使可塑性的各种研究成为可能,这些可塑性为基于纹状体的学习服务。

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