Please use this identifier to cite or link to this item: https://doi.org/10.3390/brainsci3010360
Title: Non-coding RNAs as potential neuroprotectants against ischemic brain injury
Authors: Kaur, P 
Liu, F 
Tan, J.R 
Lim, K.Y 
Sepramaniam, S 
Karolina, D.S 
Armugam, A 
Jeyaseelan, K 
Keywords: 4 aminobutyric acid B receptor
activating transcription factor 4
anticoagulant agent
brain derived neurotrophic factor
cyclin D1
Hox protein
inducible nitric oxide synthase
Jagged1
microRNA 124
microRNA 223
microRNA 9
phosphatidylinositol 3, 4, 5 trisphosphate 3 phosphatase
Piwi interacting RNA
protein bcl 2
RNA polymerase II
unclassified drug
untranslated RNA
apoptosis
biogenesis
brain development
brain dysfunction
brain ischemia
cell cycle
cell death
clinical trial (topic)
down regulation
excitotoxicity
gene control
gene expression
genetic transcription
human
hypoxia
hypoxic ischemic encephalopathy
inflammation
ischemic preconditioning
neuroprotection
nonhuman
oxidative stress
phase 2 clinical trial (topic)
review
RNA translation
transcription regulation
Issue Date: 2013
Citation: Kaur, P, Liu, F, Tan, J.R, Lim, K.Y, Sepramaniam, S, Karolina, D.S, Armugam, A, Jeyaseelan, K (2013). Non-coding RNAs as potential neuroprotectants against ischemic brain injury. Brain Sciences 3 (1) : 360-395. ScholarBank@NUS Repository. https://doi.org/10.3390/brainsci3010360
Abstract: Over the past decade, scientific discoveries have highlighted new roles for a unique class of non-coding RNAs. Transcribed from the genome, these non-coding RNAs have been implicated in determining the biological complexity seen in mammals by acting as transcriptional and translational regulators. Non-coding RNAs, which can be sub-classified into long non-coding RNAs, microRNAs, PIWI-interacting RNAs and several others, are widely expressed in the nervous system with roles in neurogenesis, development and maintenance of the neuronal phenotype. Perturbations of these non-coding transcripts have been observed in ischemic preconditioning as well as ischemic brain injury with characterization of the mechanisms by which they confer toxicity. Their dysregulation may also confer pathogenic conditions in neurovascular diseases. A better understanding of their expression patterns and functions has uncovered the potential use of these riboregulators as neuroprotectants to antagonize the detrimental molecular events taking place upon ischemic-reperfusion injury. In this review, we discuss the various roles of non-coding RNAs in brain development and their mechanisms of gene regulation in relation to ischemic brain injury. We will also address the future directions and open questions for identifying promising non-coding RNAs that could eventually serve as potential neuroprotectants against ischemic brain injury. © 2013 by the authors; licensee MDPI, Basel, Switzerland.
Source Title: Brain Sciences
URI: https://scholarbank.nus.edu.sg/handle/10635/176023
ISSN: 2076-3425
DOI: 10.3390/brainsci3010360
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