Suzanne F C Miller-Delaney
Overview
Explore the profile of Suzanne F C Miller-Delaney including associated specialties, affiliations and a list of published articles.
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6
Citations
200
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Recent Articles
1.
Reynolds J, Miller-Delaney S, Jimenez-Mateos E, Sano T, McKiernan R, Simon R, et al.
Front Neurol
. 2015 Mar;
6:46.
PMID: 25806020
Exposure of the brain to brief, non-harmful seizures can activate protective mechanisms that temporarily generate a damage-refractory state. This process, termed epileptic tolerance, is associated with large-scale down-regulation of gene...
2.
Miller-Delaney S, Bryan K, Das S, McKiernan R, Bray I, Reynolds J, et al.
Brain
. 2015 Jan;
138(Pt 3):616-31.
PMID: 25552301
Temporal lobe epilepsy is associated with large-scale, wide-ranging changes in gene expression in the hippocampus. Epigenetic changes to DNA are attractive mechanisms to explain the sustained hyperexcitability of chronic epilepsy....
3.
Miller-Delaney S, Das S, Stallings R, Henshall D
Methods Mol Biol
. 2013 Aug;
1067:87-101.
PMID: 23975788
Epigenetic modification of DNA by methylation of the cytosine present in CG dinucleotides constitutes a key regulatory mechanism in the control of gene expression in neurological diseases. In this chapter,...
4.
Michalak Z, Sano T, Engel T, Miller-Delaney S, Lerner-Natoli M, Henshall D
Epilepsy Res
. 2012 Nov;
103(2-3):167-79.
PMID: 23182415
Mesial temporal lobe epilepsy (MTLE) is the most common, intractable seizure disorder in adults. Blood-brain barrier (BBB) disruption, including interruption of endothelial tight cell junctions and serum protein and immunoglobulin...
5.
Miller-Delaney S, Das S, Sano T, Jimenez-Mateos E, Bryan K, Buckley P, et al.
J Neurosci
. 2012 Feb;
32(5):1577-88.
PMID: 22302800
Prolonged seizures (status epilepticus) produce pathophysiological changes in the hippocampus that are associated with large-scale, wide-ranging changes in gene expression. Epileptic tolerance is an endogenous program of cell protection that...
6.
Miller-Delaney S, Lieberam I, Murphy P, Mitchell K
PLoS One
. 2011 Feb;
6(1):e14565.
PMID: 21283688
The development of different brain regions involves the coordinated control of proliferation and cell fate specification along and across the neuraxis. Here, we identify Plxdc2 as a novel regulator of...