Zhang Li, Li Yan-Hai, Meng Kai, Xie Wen
Department of Physiology and Pathophysiology, Medical School of Xi'an Jiaotong University, Xi'an 710061, China.
Sheng Li Xue Bao. 2010 Feb 25;62(1):23-9.
Late-phase long-term potentiation (L-LTP) plays a very important role in the maintenance of long-term memory in hippocampus. However, studies have shown that L-LTP can be reversed by subsequent neuronal activity. The aim of the present study is to investigate whether the presynaptic mechanism and the change of AMPARs expressions are involved in the reversal of L-LTP in hippocampal CA1 area. Standard extracellular recording technique was used to record the potential change in the stratum radiatum of CA1 area of adult rat hippocampal slices. Two hours after LTP induction, which was induced by high-frequency stimulation (HFS), two episodes of high-intensity paired-pulse low-frequency stimulation (HI-PP-LFS) were delivered to induce L-LTP reversal. Paired-pulse ratios (PPR) were obtained before LTP induction, 2 h after LTP induction and 30 min after LTP reversal. On the other hand, immunofluorescence histochemistry was used to detect AMPARs expressions before and after L-LTP reversal. The results showed that, after 2 h of induction, L-LTP was partially reversed by two episodes of HI-PP-LFS, and the percentage of depotentiation was 61.79%+/-14.51%. PPR obtained before and after LTP induction, and as well that after LTP reversal, are all more than 1, showing paired-pulse facilitation (PPF). Multiple comparison indicated PPR before LTP induction was the greatest one, and PPR after LTP induction was the smallest. In addition, no significant difference was observed in the intensity of AMPAR/GluR2 immunoreactivity in CA1 area among control group, LTP group and LTP reversal group. These results suggest that the presynaptic mechanism is involved in both the maintenance and reversal of L-LTP and there is no change in AMPAR/GluR2 expression before and after the reversal of L-LTP.
晚期长时程增强(L-LTP)在海马体长期记忆的维持中起着非常重要的作用。然而,研究表明,L-LTP可被随后的神经元活动逆转。本研究的目的是探讨海马CA1区L-LTP逆转是否涉及突触前机制和AMPA受体表达的变化。采用标准细胞外记录技术记录成年大鼠海马脑片CA1区辐射层的电位变化。在通过高频刺激(HFS)诱导LTP两小时后,给予两串高强度配对脉冲低频刺激(HI-PP-LFS)以诱导L-LTP逆转。在LTP诱导前、LTP诱导后2小时和LTP逆转后30分钟获得配对脉冲比率(PPR)。另一方面,采用免疫荧光组织化学法检测L-LTP逆转前后AMPA受体的表达。结果显示,诱导2小时后,两串HI-PP-LFS使L-LTP部分逆转,去增强化的百分比为61.79%±14.51%。LTP诱导前后以及LTP逆转后的PPR均大于1,显示配对脉冲易化(PPF)。多重比较表明,LTP诱导前的PPR最大,LTP诱导后的PPR最小。此外,对照组、LTP组和LTP逆转组CA1区AMPA受体/GluR2免疫反应强度无显著差异。这些结果表明突触前机制参与了L-LTP的维持和逆转,且L-LTP逆转前后AMPA受体/GluR2表达无变化。