Domoic acid disrupts the activity and connectivity of neuronal networks in organotypic brain slice cultures

被引:11
作者
Hiolski, E. M. [1 ]
Ito, S. [2 ]
Beggs, J. M. [3 ]
Lefebvre, K. A. [4 ]
Litke, A. M. [2 ]
Smith, D. R. [1 ]
机构
[1] Univ Calif Santa Cruz, Dept Microbiol & Environm Toxicol, Santa Cruz, CA 95064 USA
[2] Univ Calif Santa Cruz, Santa Cruz Inst Particle Phys, Santa Cruz, CA 95064 USA
[3] Indiana Univ, Dept Phys, Bloomington, IN 47405 USA
[4] NOAA Fisheries, Northwest Fisheries Sci Ctr, Seattle, WA USA
基金
美国国家科学基金会;
关键词
Domoic acid; Multielectrode recording; Developmental neurotoxicity; Organotypic brain slice culture; HARMFUL ALGAL BLOOMS; CALIFORNIA SEA LIONS; SILENT SYNAPSES; KAINIC ACID; EXPRESSION; INTERNEURONS; MODEL;
D O I
10.1016/j.neuro.2016.08.004
中图分类号
Q189 [神经科学];
学科分类号
071006 ;
摘要
Domoic acid is a neurotoxin produced by algae and is found in seafood during harmful algal blooms. As a glutamate agonist, domoic acid inappropriately stimulates excitatory activity in neurons. At high doses, this leads to seizures and brain lesions, but it is unclear how lower, asymptomatic exposures disrupt neuronal activity. Domoic acid has been detected in an increasing variety of species across a greater geographical range than ever before, making it critical to understand the potential health impacts of low-level exposure on vulnerable marine mammal and human populations. To determine whether prolonged domoic acid exposure altered neuronal activity in hippocampal networks, we used a custom-made 512 multi-electrode array with high spatial and temporal resolution to record extracellular potentials (spikes) in mouse organotypic brain slice cultures. We identified individual neurons based on spike waveform and location, and measured the activity and functional connectivity within the neuronal networks of brain slice cultures. Domoic acid exposure significantly altered neuronal spiking activity patterns, and increased functional connectivity within exposed cultures, in the absence of overt cellular or neuronal toxicity. While the overall spiking activity of neurons in domoic acid-exposed cultures was comparable to controls, exposed neurons spiked significantly more often in bursts. We also identified a subset of neurons that were electrophysiologically silenced in exposed cultures, and putatively identified those neurons as fast-spiking inhibitory neurons. These results provide evidence that domoic acid affects neuronal activity in the absence of cytotoxicity, and suggest that neurodevelopmental exposure to domoic acid may alter neurological function in the absence of clinical symptoms. (C) 2016 Elsevier B.V. All rights reserved.
引用
收藏
页码:215 / 224
页数:10
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