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海马切片中的半胱天冬酶-3活性反映了突触可塑性的变化。

Caspase-3 activity in hippocampal slices reflects changes in synaptic plasticity.

作者信息

Kudryashova I V, Onufriev M V, Kudryashov I E, Gulyaeva N V

机构信息

Institute of Higher Nervous Activity and Neurophysiology, Russian Academy of Sciences, 5 Butlerov Street, 117485, Moscow, Russia.

出版信息

Neurosci Behav Physiol. 2009 Jan;39(1):13-20. doi: 10.1007/s11055-008-9089-z. Epub 2008 Dec 17.

Abstract

Electrophysiological measures of the functional activity of neurons in field CA1 in conditions of paired-pulse stimulation of Schäffer collaterals were performed in relation to the involvement of caspase-3 in mediating neuroplasticity; the relationship between functional activity and caspase-3 activity in hippocampal slices from Wistar rats was addressed. Enzyme activity was assessed in each individual slice at the end of the electrophysiological experiment. The results obtained here showed that the highest level of enzyme activity was seen when the efficiency of interneuronal interactions decreased. Nerve cell excitability showed no changes; interactions increasing synaptic efficiency, particularly in paired-pulse stimulation, produced normal response amplitudes. Further deterioration of the functional state of slices and impairments in spike generation were accompanied by increases in caspase-3 activity to the normal level. Increases in the activity of another proteinase, cathepsin B, were generally seen in any deviation from normal functioning, though there was no correlation with any of the electrophysiological parameters. It is suggested that high caspase-3 activity in slices is linked with neuroplastic processes in synapses and has no direct relationship to nerve cell apoptosis.

摘要

在对Schäffer侧支进行双脉冲刺激的条件下,针对caspase-3参与介导神经可塑性的情况,对海马CA1区神经元的功能活动进行了电生理测量;探讨了Wistar大鼠海马切片中功能活动与caspase-3活性之间的关系。在电生理实验结束时,对每片切片的酶活性进行了评估。此处获得的结果表明,当神经元间相互作用效率降低时,酶活性水平最高。神经细胞兴奋性未发生变化;增加突触效率的相互作用,特别是在双脉冲刺激中,产生了正常的反应幅度。切片功能状态的进一步恶化和动作电位产生的损伤伴随着caspase-3活性增加至正常水平。尽管与任何电生理参数均无相关性,但在任何偏离正常功能的情况下,通常都会观察到另一种蛋白酶组织蛋白酶B的活性增加。研究表明,切片中高caspase-3活性与突触中的神经可塑性过程有关,与神经细胞凋亡无直接关系。

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