Gilad G M, Gilad V H, Wyatt R J
Neuropsychiatry Branch, NIMH Neuroscience Research Center at Saint Elizabeths, Washington, DC 20032.
Mol Chem Neuropathol. 1993 Jan-Feb;18(1-2):197-210. doi: 10.1007/BF03160034.
Regionally selective delayed neuronal degeneration is a characteristic sequel of cerebral ischemia. Recent evidence indicates that changes in brain polyamine metabolism may be critical for nerve cell survival after ischemia. Within hours after ischemia, intracellular putrescine levels are greatly increased and remain elevated for days, whereas only minor changes are noted in the levels of the polyamines spermine and spermidine. In contrast, the extracellular levels of all polyamines are low after ischemia. Injections of polyamines following ischemia, however, can protect neurons in the gerbil brain from delayed cell death, with spermine being the most potent of the polyamines. In the present study, therefore, we sought to determine if increased polyamine uptake occurs in the brain after ischemia. In the hippocampal slice preparation, temperature-dependent uptake was unique for spermine, but not for spermidine or putrescine. Uptake of [14C]spermine was transiently increased after ischemia, peaking at 150% of control by 12-13 h and subsiding by 24 h. Intravenous injections of [3H]spermidine resulted in a postischemic accumulation of this polyamine throughout the forebrain parenchyma. We conclude that: 1. Active cellular uptake of spermine is transiently increased early after ischemia; 2. A nonspecific accumulation of exogenous polyamines occurs early after ischemia probably owing to a compromised blood-brain barrier, and 3. The findings indicate that exogenous polyamines can exert their effect directly in the brain after ischemia.
局部选择性迟发性神经元变性是脑缺血的一个典型后遗症。最近的证据表明,脑内多胺代谢的变化可能对缺血后神经细胞的存活至关重要。在缺血后数小时内,细胞内腐胺水平大幅升高并持续数天,而多胺精胺和亚精胺水平仅出现轻微变化。相比之下,缺血后所有多胺的细胞外水平都很低。然而,缺血后注射多胺可以保护沙鼠脑中的神经元免于迟发性细胞死亡,其中精胺是最有效的多胺。因此,在本研究中,我们试图确定缺血后脑中多胺摄取是否增加。在海马脑片制备中,温度依赖性摄取是精胺特有的,而亚精胺或腐胺则没有。缺血后[14C]精胺的摄取短暂增加,在12 - 13小时达到对照的150%峰值,24小时后下降。静脉注射[3H]亚精胺导致该多胺在整个前脑实质中缺血后蓄积。我们得出以下结论:1. 缺血后早期精胺的主动细胞摄取短暂增加;2. 缺血后早期可能由于血脑屏障受损,外源性多胺出现非特异性蓄积;3. 研究结果表明,缺血后外源性多胺可直接在脑中发挥作用。