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Isoflurane Reversibly Destabilizes Hippocampal Dendritic Spines by an Actin-dependent Mechanism

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Journal PLoS One
Date 2014 Jul 29
PMID 25068870
Citations 20
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Abstract

General anesthetics produce a reversible coma-like state through modulation of excitatory and inhibitory synaptic transmission. Recent evidence suggests that anesthetic exposure can also lead to sustained cognitive dysfunction. However, the subcellular effects of anesthetics on the structure of established synapses are not known. We investigated effects of the widely used volatile anesthetic isoflurane on the structural stability of hippocampal dendritic spines, a postsynaptic structure critical to excitatory synaptic transmission in learning and memory. Exposure to clinical concentrations of isoflurane induced rapid and non-uniform shrinkage and loss of dendritic spines in mature cultured rat hippocampal neurons. Spine shrinkage was associated with a reduction in spine F-actin concentration. Spine loss was prevented by either jasplakinolide or cytochalasin D, drugs that prevent F-actin disassembly. Isoflurane-induced spine shrinkage and loss were reversible upon isoflurane elimination. Thus, isoflurane destabilizes spine F-actin, resulting in changes to dendritic spine morphology and number. These findings support an actin-based mechanism for isoflurane-induced alterations of synaptic structure in the hippocampus. These reversible alterations in dendritic spine structure have important implications for acute anesthetic effects on excitatory synaptic transmission and synaptic stability in the hippocampus, a locus for anesthetic-induced amnesia, and have important implications for anesthetic effects on synaptic plasticity.

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References
1.
Westphalen R, Hemmings Jr H . Effects of isoflurane and propofol on glutamate and GABA transporters in isolated cortical nerve terminals. Anesthesiology. 2003; 98(2):364-72. DOI: 10.1097/00000542-200302000-00016. View

2.
van Rossum D, Hanisch U . Cytoskeletal dynamics in dendritic spines: direct modulation by glutamate receptors?. Trends Neurosci. 1999; 22(7):290-5. DOI: 10.1016/s0166-2236(99)01404-6. View

3.
Yu D, Jiang Y, Gao J, Liu B, Chen P . Repeated exposure to propofol potentiates neuroapoptosis and long-term behavioral deficits in neonatal rats. Neurosci Lett. 2013; 534:41-6. DOI: 10.1016/j.neulet.2012.12.033. View

4.
Wei H, Xiong W, Yang S, Zhou Q, Liang C, Zeng B . Propofol facilitates the development of long-term depression (LTD) and impairs the maintenance of long-term potentiation (LTP) in the CA1 region of the hippocampus of anesthetized rats. Neurosci Lett. 2002; 324(3):181-4. DOI: 10.1016/s0304-3940(02)00183-0. View

5.
Allison D, Gelfand V, Spector I, Craig A . Role of actin in anchoring postsynaptic receptors in cultured hippocampal neurons: differential attachment of NMDA versus AMPA receptors. J Neurosci. 1998; 18(7):2423-36. PMC: 6793094. View