Trommer B L, Liu Y B, Pasternak J F
Division of Pediatric Neurology, Evanston Hospital, IL 60201, USA.
Brain Res Dev Brain Res. 1996 Oct 23;96(1-2):97-108. doi: 10.1016/0165-3806(96)00104-6.
Long-term depression (LTD) is a decrease in synaptic efficacy that may model the elimination of inappropriate synapses during brain development. LTD might therefore be expected to be prominent in the juvenile hippocampal dentate gyrus (DG), where the majority of neuronogenesis and excitatory synapse production and pruning occur in the first postnatal month. Thus far, however, LTD in immature DG remains unexplored. Low-frequency stimulus induced homosynaptic LTD was studied at the medial perforant path-granule cell synapse in rats 8-30 days of age. LTD was most consistent and was of greatest magnitude in the youngest animals, and was more robust in response to stimulation at 1 Hz than at 3 or 5 Hz. LTD was saturable by repetitive delivery of low-frequency stimulation, and reversible by tetanic stimulation that induced long-term potentiation (LTP). LTD of the field EPSP was not prevented by bath application of the NMDA receptor antagonist AP5, the mGluR antagonist MCPG, or the L-type voltage sensitive calcium channel antagonist nitrendipine. In whole cell recordings LTD induction was blocked by hyperpolarization of the postsynaptic neuron but not by calcium chelation with BAPTA. Calcium chelation blocked LTP and simultaneously unmasked tetanus induced LTD. These data demonstrate that LTD is prominent in immature DG, that LTP and LTD are complementary processes, and that LTD is likely to be induced postsynaptically because it is voltage dependent, although the mechanism of voltage dependence remains to be elucidated.
长时程抑制(LTD)是突触效能的降低,它可能模拟大脑发育过程中不适当突触的消除。因此,LTD可能在幼年海马齿状回(DG)中很突出,在出生后的第一个月,大部分神经发生、兴奋性突触的产生和修剪都发生在该区域。然而,迄今为止,未成熟DG中的LTD仍未被探索。在8至30日龄大鼠的内侧穿通通路-颗粒细胞突触处研究了低频刺激诱导的同突触LTD。LTD在最年幼的动物中最为一致且幅度最大,并且对1Hz刺激的反应比对3Hz或5Hz刺激的反应更强健。通过重复给予低频刺激,LTD是可饱和的,并且通过诱导长时程增强(LTP)的强直刺激可使其逆转。场兴奋性突触后电位(fEPSP)的LTD不会被浴应用NMDA受体拮抗剂AP5、mGluR拮抗剂MCPG或L型电压敏感性钙通道拮抗剂尼群地平所阻断。在全细胞记录中,LTD的诱导被突触后神经元的超极化所阻断,但不会被用BAPTA进行钙螯合所阻断。钙螯合阻断了LTP并同时揭示了强直刺激诱导的LTD。这些数据表明,LTD在未成熟DG中很突出,LTP和LTD是互补的过程,并且LTD可能是在突触后诱导的,因为它是电压依赖性的,尽管电压依赖性的机制仍有待阐明。