School of Life Sciences, University of Warwick, Coventry, CV4 7AL, United Kingdom.
J Neurosci. 2011 Apr 20;31(16):6221-34. doi: 10.1523/JNEUROSCI.4039-10.2011.
The extent to which brain slices reflect the energetic status of the in vivo brain has been a subject of debate. We addressed this issue to investigate the recovery of energetic parameters and adenine nucleotides in rat hippocampal slices and the influence this has on synaptic transmission and plasticity. We show that, although adenine nucleotide levels recover appreciably within 10 min of incubation, it takes 3 h for a full recovery of the energy charge (to ≥ 0.93) and that incubation of brain slices at 34°C results in a significantly higher ATP/AMP ratio and a threefold lower activity of AMP-activated protein kinase compared with slices incubated at room temperature. Supplementation of artificial CSF with d-ribose and adenine (Rib/Ade) increased the total adenine nucleotide pool of brain slices, which, when corrected for the influence of the dead cut edges, closely approached in vivo values. Rib/Ade did not affect basal synaptic transmission or paired-pulse facilitation but did inhibit long-term potentiation (LTP) induced by tetanic or weak theta-burst stimulation. This decrease in LTP was reversed by strong theta-burst stimulation or antagonizing the inhibitory adenosine A(1) receptor suggesting that the elevated tissue ATP levels had resulted in greater activity-dependent adenosine release during LTP induction. This was confirmed by direct measurement of adenosine release with adenosine biosensors. These observations provide new insight into the recovery of adenine nucleotides after slice preparation, the sources of loss of such compounds in brain slices, the means by which to restore them, and the functional consequences of doing so.
脑片在多大程度上反映了体内大脑的能量状态一直是一个争论的话题。我们解决了这个问题,以研究大鼠海马脑片的能量参数和腺嘌呤核苷酸的恢复情况,以及这对突触传递和可塑性的影响。我们表明,尽管腺嘌呤核苷酸水平在孵育 10 分钟内显著恢复,但需要 3 小时才能完全恢复能量电荷(≥0.93),并且在 34°C 下孵育脑片会导致与在室温下孵育相比,ATP/AMP 比值显著升高,而 AMP 激活蛋白激酶的活性降低三倍。用 D-核糖和腺嘌呤(Rib/Ade)补充人工脑脊液可增加脑片的总腺嘌呤核苷酸池,当校正死切边缘的影响时,该池接近体内值。Rib/Ade 不影响基础突触传递或成对脉冲易化,但抑制由强直或弱θ爆发刺激诱导的长时程增强(LTP)。这种 LTP 的减少被强θ爆发刺激或拮抗抑制性腺苷 A(1)受体所逆转,这表明在 LTP 诱导过程中,升高的组织 ATP 水平导致了更大的活性依赖性腺苷释放。这通过用腺苷生物传感器直接测量腺苷释放得到证实。这些观察结果为脑片制备后腺嘌呤核苷酸的恢复、脑片中这些化合物丢失的来源、恢复它们的方法以及这样做的功能后果提供了新的见解。