Oscar Langendorff Institute of Physiology, University of Rostock, 18057 Rostock, Germany.
Neural Plast. 2012;2012:237913. doi: 10.1155/2012/237913. Epub 2012 Jun 26.
Hyperpolarization-activated, cyclic nucleotide-gated nonselective (HCN) channels modulate both membrane potential and resistance and play a significant role in synaptic plasticity. We compared the influence of HCN channels on long-term depression (LTD) at the medial perforant path-granule cell synapse in early postnatal (P9-15) and adult (P30-60) rats. LTD was elicited in P9-15 slices using low-frequency stimulation (LFS, 900 pulses, 1 Hz; 80 ± 4% of baseline). Application of the specific HCN channel blocker ZD7288 (10 μM) before LFS significantly enhanced LTD (62 ± 4%; P < 0.01), showing HCN channels restrain LTD induction. However, when ZD7288 was applied after LFS, LTD was similar to control values and significantly different from the values obtained with ZD7288 application before LFS (81 ± 5%; P < 0.01), indicating that HCN channels do not modulate LTD expression. LTD in slices from adult rats were only marginally lower compared to those in P9-15 slices (85 ± 6%), but bath application of ZD7288 prior to LFS resulted in the same amount of LTD (85 ± 5%). HCN channels in adult tissue hence lose their modulatory effect. In conclusion, we found that HCN channels at the medial perforant path-granule cell synapse compromise LFS-associated induction, but not expression of LTD in early postnatal, but not in adult, rats.
超极化激活、环核苷酸门控非选择性 (HCN) 通道调节膜电位和电阻,在突触可塑性中发挥重要作用。我们比较了 HCN 通道对早期(postnatal, P9-15)和成年(postnatal, P30-60)大鼠中内侧穿通路径-颗粒细胞突触的长时程压抑(long-term depression, LTD)的影响。在 P9-15 切片中,使用低频刺激(low-frequency stimulation, LFS, 900 个脉冲,1 Hz; 80 ± 4%的基线)来引发 LTD。在 LFS 之前应用特异性 HCN 通道阻断剂 ZD7288(10 μM)显著增强了 LTD(62 ± 4%; P < 0.01),表明 HCN 通道抑制 LTD 诱导。然而,当 ZD7288 在 LFS 后应用时,LTD 与对照值相似,与 LFS 前应用 ZD7288 时的值明显不同(81 ± 5%; P < 0.01),表明 HCN 通道不调节 LTD 表达。与 P9-15 切片相比,成年大鼠切片中的 LTD 仅略低(85 ± 6%),但在 LFS 前应用 ZD7288 进行浴灌流导致相同程度的 LTD(85 ± 5%)。因此,成年组织中的 HCN 通道失去了其调节作用。总之,我们发现 HCN 通道在早期(postnatal)但不在成年(postnatal)大鼠的内侧穿通路径-颗粒细胞突触上,会损害与 LFS 相关的 LTD 诱导,但不会损害其表达。