Yoshioka M, Itoh Y, Mori K, Ueno K, Matsumoto M, Togashi H
Department of Pharmacology, Hokkaido University School of Medicine, Sapporo, Japan.
Neurosci Lett. 1999 Feb 19;261(3):171-4. doi: 10.1016/s0304-3940(99)00004-x.
Although interleukin-1beta (IL-1beta) has recently been implicated in neuronal cell death in vitro and in vivo after global forebrain ischemia, the role of IL-1beta in the functional injuries, i.e. impairment of synaptic transmission, after cerebral ischemia that does not cause neuronal death in the nervous system remains unknown. To address this question, we investigated the effect of short-term incomplete ischemia without apparent neural death on hippocampal long-term potentiation (LTP) in anesthetized rats, and examined the possible role of IL-1beta as an intermediary in this effect. Short-term incomplete cerebral ischemia (10 min) was induced in halothane-anesthetized rats by bilaterally clamping the common carotid arteries. Four days after ischemia, functional injuries in neuronal transmission in the hippocampal formation were observed without significant changes in pathological studies such as neuronal cell death. The LTP elicited in both Shaffer-CA1 synapses and perforant path-dentate gyrus synapses was significantly inhibited by the short-term incomplete ischemia. This inhibition of LTP was blocked by IL-1beta tripeptide antagonist (Lys-D-Pro-Thr), suggesting that the inhibitory effect of mild ischemia on synaptic potentials and LTP may be mediated by the generation of IL-1beta. These findings have important implications for the role of IL-1beta in not only neuronal cell death but also functional injuries without cell loss, perhaps elicited by transient cerebral ischemia.
尽管白细胞介素-1β(IL-1β)最近被认为在全脑缺血后的体外和体内神经元细胞死亡中起作用,但在不引起神经系统神经元死亡的脑缺血后,IL-1β在功能性损伤即突触传递受损中的作用仍不清楚。为了解决这个问题,我们研究了短期不完全缺血且无明显神经死亡对麻醉大鼠海马长时程增强(LTP)的影响,并探讨了IL-1β作为这一效应中介物的可能作用。通过双侧夹闭颈总动脉,在氟烷麻醉的大鼠中诱导短期不完全脑缺血(10分钟)。缺血后4天,观察到海马结构中神经元传递的功能性损伤,而诸如神经元细胞死亡等病理学研究无显著变化。短期不完全缺血显著抑制了在海马CA1区的Schaffer突触和穿通通路-齿状回突触中诱发的LTP。IL-1β三肽拮抗剂(Lys-D-Pro-Thr)可阻断这种对LTP的抑制作用,提示轻度缺血对突触电位和LTP的抑制作用可能是由IL-1β的产生介导的。这些发现不仅对IL-1β在神经元细胞死亡中的作用,而且对可能由短暂性脑缺血引起的无细胞丢失的功能性损伤中的作用具有重要意义。