Enhancement of morphological plasticity in hippocampal neurons by a physically modified saline via phosphatidylinositol-3 kinase.
Increase of the density of dendritic spines and enhancement of synaptic transmission through ionotropic glutamate receptors are important events, leading to synaptic plasticity and eventually hippocampus-dependent spatial learning and memory formation. Here we have undertaken an innovative approach...
Main Authors: | Avik Roy, Khushbu K Modi, Saurabh Khasnavis, Supurna Ghosh, Richard Watson, Kalipada Pahan |
---|---|
Format: | Article |
Language: | English |
Published: |
Public Library of Science (PLoS)
2014-01-01
|
Series: | PLoS ONE |
Online Access: | http://europepmc.org/articles/PMC4090203?pdf=render |
Similar Items
-
A physically-modified saline suppresses neuronal apoptosis, attenuates tau phosphorylation and protects memory in an animal model of Alzheimer's disease.
by: Khushbu K Modi, et al.
Published: (2014-01-01) -
Correction: A Physically-Modified Saline Suppresses Neuronal Apoptosis, Attenuates Tau Phosphorylation and Protects Memory in an Animal Model of Alzheimer's Disease.
by: Khushbu K Modi, et al.
Published: (2017-01-01) -
Protection of Tregs, suppression of Th1 and Th17 cells, and amelioration of experimental allergic encephalomyelitis by a physically-modified saline.
by: Susanta Mondal, et al.
Published: (2012-01-01) -
Cinnamon and Its Metabolite Sodium Benzoate Attenuate the Activation of p21rac and Protect Memory and Learning in an Animal Model of Alzheimer's Disease.
by: Khushbu K Modi, et al.
Published: (2015-01-01) -
Regulation of Cyclic AMP Response Element Binding and Hippocampal Plasticity-Related Genes by Peroxisome Proliferator-Activated Receptor α
by: Avik Roy, et al.
Published: (2013-08-01)