首页> 外文期刊>Brain research >Levetiracetam mediates subtle pH-shifts in adult human neocortical pyramidal cells via an inhibition of the bicarbonate-driven neuronal pH- regulation - Implications for excitability and plasticity modulation
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Levetiracetam mediates subtle pH-shifts in adult human neocortical pyramidal cells via an inhibition of the bicarbonate-driven neuronal pH- regulation - Implications for excitability and plasticity modulation

机译:Levetiracetam通过抑制碳酸氢盐驱动的神经元pH调节,介导成年人新病态锥体细胞的微妙pH转移 - 对兴奋性和可塑性调制的影响

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摘要

The intracellular pH (pHi) of mammalian central neurons is tightly regulated and small pHi-fluctuations can fine-tune inter-/intracellular signaling, excitability, and synaptic plasticity. The research-gap about the pHi-regulation of human brain neurons is addressed here by testing possible influences of the anticonvulsant levetiracetam (LEV). BCECF-AM-loaded neocortical pyramidal cells were fluorometrically investigated in slice-preparations of tissue resected from the middle temporal gyrus of five adults with intractable temporal-lobe epilepsy. Recovery-slope from intracellular acidification following an ammonium prepulse (APP) was used to measure the pHi-regulation. Among twenty pyramidal cells exposed to 50 mu M LEV, the resting pHi (7.09 +/- 0.14) was lowered in eight (40%) neurons, on average by 0.02 +/- 0.011 pH-units. In three (15%) and nine (45%) neurons, a minimal alkaline shift (0.017 +/- 0.004 pH-units) and no pHi-shift occurred, respectively. The LEV-induced pHi-shifts were positively correlated with the resting pHi (r = 0.6, p = 0.006, n = 20). In five neurons, which all had responded on LEV with an acidification before, the recovery from APP-acidification was significantly delayed during LEV (p < 0.001). This inhibitory LEV-effect on pHi-regulation i) was similar to that of 200 mu M 4,4'-diisothiocyanostilbene-2,2'-disulfonic acid (n = 2) and ii) did not occur under nominal bicarbonate-free conditions (n = 2). Thus, LEV lowered the pHi of human neocortical pyramidal cells most likely by a weakening of the transmembrane HCO3( - )-mediated acid-extrusion. This might contribute to LEV's anticonvulsive potency. Neurons with more acidic resting pHi-values showed a minimal alkalization upon LEV providing a mechanism for paradoxical proconvulsive LEV-effects rarely observed in epilepsy patients. The significance of these subtle pHi-shifts for cortical excitability and plasticity is discussed.
机译:哺乳动物中央神经元的细胞内pH(PHI)是紧密调节的,小的PHI波动可以微细曲调/细胞内信号传导,兴奋性和突触塑性。关于人脑神经元的phi-crulation的研究 - 通过测试抗惊厥救生液(LEV)的可能影响来解决。将BCECF-AM加载的Neocortical金字塔蛋白质细胞在从五个成年人中颞叶中切除的组织的切片制剂中荧光上研究了顽固的颞叶癫痫。在铵浸渍(APP)后,从细胞内酸化的恢复斜率用于测量发氏调控。在暴露于50μmL的二十锥体细胞中,静止的PHI(7.09 +/- 0.14)在八(40%)神经元中降低,平均为0.02 +/- 0.011 pH-单位。在三(15%)和九(45%)神经元中,最小碱性移位(0.017 +/- 0.004 pH-单元)和没有发出的PHI转移。 Lev-诱导的Phi转移与静止的PHI呈正相关(r = 0.6,p = 0.006,n = 20)。在五个神经元中,在任何酸化的酸化后都在酸化,在LEV期间从APP酸化的回收率显着延迟(P <0.001)。 Phi-Crululation I)的这种抑制性抑菌效果类似于200μm4,4'-二硫氰酸苯磺苯-2,2'-二硫氰酸(n = 2)和II)未发生在标称碳酸氢盐条件下(n = 2)。因此,最有可能通过跨膜HCO3( - )介导的酸挤出的弱化,从而降低了人类新皮质锥体细胞的PHI。这可能有助于lev的抗抑郁效力。具有更多酸性静息的神经元的神经元在LEV上显示了最小的碱化,为癫痫患者中很少观察到矛盾的促毒性抑菌症的机制。讨论了这些微妙的Phi转移的意义,用于皮质兴奋性和可塑性。

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