D-Serine Intervention In The Medial Entorhinal Area Alters TLE-Related Pathology In CA1 Hippocampus Via The Temporoammonic Pathway

被引:8
作者
Beesley, Stephen
Sullenberger, Thomas
Ailani, Roshan
D'Orio, Cameron
Crockett, Mathew S.
Kumar, Sanjay S.
机构
[1] Florida State Univ, Coll Med, Dept Biomed Sci, 1115 W Call St, Tallahassee, FL 32306 USA
[2] Florida State Univ, Program Neurosci, 1115 W Call St, Tallahassee, FL 32306 USA
基金
美国国家卫生研究院;
关键词
Temporoammonic pathway; Perforant pathway; Hippocampus; Neurodegeneration; D-Serine intervention; Temporal lobe epilepsy; FREQUENCY-DEPENDENT DEPRESSION; KAINIC ACID; EPILEPTIFORM ACTIVITY; ASTROCYTIC GLUTAMATE; SPONTANEOUS SEIZURES; REACTIVE ASTROCYTES; DORSAL HIPPOCAMPUS; SUPERFICIAL LAYERS; PYRAMIDAL NEURONS; SYNAPTIC INPUTS;
D O I
10.1016/j.neuroscience.2020.10.025
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Entrainment of the hippocampus by the medial entorhinal area (MEA) in Temporal Lobe Epilepsy (TLE), the most common type of drug-resistant epilepsy in adults, is believed to be mediated primarily through the perforant pathway (PP), which connects stellate cells in layer (L) II of the MEA with granule cells of the dentate gyrus (DG) to drive the hippocampal tri-synaptic circuit. Using immunohistochemistry, high-resolution confocal microscopy and the rat pilocarpine model of TLE, we show here that the lesser known temporoammonic pathway (TAP) plays a significant role in transferring MEA pathology to the CA1 region of the hippocampus independently of the PP. The pathology observed was region-specific and restricted primarily to the CA1c subfield of the hippocampus. As shown previously, daily intracranial infusion of D-serine (100 gm), an antagonist of GluN3-containing triheteromeric N-Methyl D-aspartate receptors (t-NMDARs), into the MEA prevented loss of LIII neurons and epileptogenesis. This intervention in the MEA led to the rescue of hippocampal CA1 neurons that would have otherwise perished in the epileptic animals, and down regulation of the expression of astrocytes and microglia thereby mitigating the effects of neuroinflammation. Interestingly, these changes were not observed to a similar extent in other regions of vulnerability like the hilus, DG or CA3, suggesting that the pathology manifest in CA1 is driven predominantly through the TAP. This work highlights TAP's role in the entrainment of the hippocampus and identifies specific areas for therapeutic intervention in dealing with TLE. (C) 2020 IBRO. Published by Elsevier Ltd. All rights reserved.
引用
收藏
页码:168 / 186
页数:19
相关论文
共 94 条
[1]  
ANDERSEN P, 1971, EXP BRAIN RES, V13, P222
[2]   Hippocampal CA1 circuitry dynamically gates direct cortical inputs preferentially at theta frequencies [J].
Ang, CW ;
Carlson, GC ;
Coulter, DA .
JOURNAL OF NEUROSCIENCE, 2005, 25 (42) :9567-9580
[3]   Gating of hippocampal activity, plasticity, and memory by entorhinal cortex long-range inhibition [J].
Basu, Jayeeta ;
Zaremba, Jeffrey D. ;
Cheung, Stephanie K. ;
Hitti, Frederick L. ;
Zemelman, Boris V. ;
Losonczy, Attila ;
Siegelbaum, Steven A. .
SCIENCE, 2016, 351 (6269) :138-+
[4]   D-serine mitigates cell loss associated with temporal lobe epilepsy [J].
Beesley, Stephen ;
Sullenberger, Thomas ;
Crotty, Kathryn ;
Ailani, Roshan ;
D'Orio, Cameron ;
Evans, Kimberly ;
Ogunkunle, Emmanuel O. ;
Roper, Michael G. ;
Kumar, Sanjay S. .
NATURE COMMUNICATIONS, 2020, 11 (01)
[5]   The GluN3 subunit regulates ion selectivity within native N-methyl-D-aspartate receptors [J].
Beesley, Stephen ;
Sullenberger, Thomas ;
Kumar, Sanjay S. .
IBRO REPORTS, 2020, 9 :147-156
[6]   Colocalization of distinct NMDA receptor subtypes at excitatory synapses in the entorhinal cortex [J].
Beesley, Stephen ;
Sullenberger, Thomas ;
Pilli, Jyotsna ;
Abbasi, Saad ;
Gunjan, Akash ;
Kumar, Sanjay S. .
JOURNAL OF NEUROPHYSIOLOGY, 2019, 121 (01) :238-254
[7]   Low Mg2+ induced epileptiform activity in the subiculum before and after disconnection from rat hippocampal and entorhinal cortex slices [J].
Behr, J ;
Heinemann, U .
NEUROSCIENCE LETTERS, 1996, 205 (01) :25-28
[8]   GABA-A RECEPTOR-MEDIATED MECHANISMS CONTRIBUTE TO FREQUENCY-DEPENDENT DEPRESSION OF IPSPS IN THE HIPPOCAMPUS [J].
BENARDO, LS .
BRAIN RESEARCH, 1993, 607 (1-2) :81-88
[10]  
BEST N, 1994, ACTA NEUROPATHOL, V87, P187