Systematic review and meta-analysis of differentially expressed miRNAs in experimental and human temporal lobe epilepsy

scientific article published on 14 September 2017

Systematic review and meta-analysis of differentially expressed miRNAs in experimental and human temporal lobe epilepsy is …
instance of (P31):
scholarly articleQ13442814
meta-analysisQ815382

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P356DOI10.1038/S41598-017-11510-8
P932PMC publication ID5599629
P698PubMed publication ID28912503

P2093author name stringE A van Vliet
J A Gorter
E Aronica
J D Mills
A Korotkov
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Epileptogenicity of brain structures in human temporal lobe epilepsy: a quantified study from intracerebral EEG.Q47633755
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P275copyright licenseCreative Commons Attribution 4.0 InternationalQ20007257
P6216copyright statuscopyrightedQ50423863
P433issue1
P407language of work or nameEnglishQ1860
P304page(s)11592
P577publication date2017-09-14
P1433published inScientific ReportsQ2261792
P1476titleSystematic review and meta-analysis of differentially expressed miRNAs in experimental and human temporal lobe epilepsy
P478volume7

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cites work (P2860)
Q95314921Antagomirs targeting miR-142-5p attenuate pilocarpine-induced status epilepticus in mice
Q58616089Dual-center, dual-platform microRNA profiling identifies potential plasma biomarkers of adult temporal lobe epilepsy
Q57175060Effects of rapamycin and curcumin on inflammation and oxidative stress in vitro and in vivo - in search of potential anti-epileptogenic strategies for temporal lobe epilepsy
Q57493530Potential Role of miRNAs as Theranostic Biomarkers of Epilepsy
Q90481628Regulation of Ion Channels by MicroRNAs and the Implication for Epilepsy
Q96303296The Progress in Diagnosis and Treatment of Exosomes and MicroRNAs on Epileptic Comorbidity Depression
Q55381088Whole-exome sequencing to disentangle the complex genetics of hippocampal sclerosis-temporal lobe epilepsy.
Q92591413microRNA-132 is overexpressed in glia in temporal lobe epilepsy and reduces the expression of pro-epileptogenic factors in human cultured astrocytes
Q60958314microRNAs Sculpt Neuronal Communication in a Tight Balance That Is Lost in Neurological Disease

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