The prefrontal cortex (PFC) is one of the brain regions with more prominent changes in human aging. The molecular processes related to the cognitive decline and mood changes during aging are not completely understood. To improve our knowledge, we integrated transcriptomic data of four studies of human PFC from elderly people (58–80 years old) compared with younger people (20–40 years old) using a meta-analytic approximation combined with molecular signature analysis. We identified 1817 differentially expressed genes, 561 up-regulated and 1256 down-regulated. Pathway analysis revealed down-regulation of synaptic genes with conservation of gene expression of other neuronal regions. Additionally, we identified up-regulation of markers of astro...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes contribute to a variety of functions in the brain, including homeostasis, synapse formati...
The prefrontal cortex (PFC) is one of the brain regions with more prominent changes in human aging. ...
Background: Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well...
BACKGROUND:Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well ...
Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well characteriz...
Summary: Gene expression studies suggest that aging of the human brain is determined by a complex in...
<div><p>Background</p><p>Age changes in expression of inflammatory, synaptic, and neurotrophic genes...
The decline of cognitive function occurs with aging, but the mechanisms responsible are unknown. Ast...
This article is part of a Special Issue entitled: Transcriptional Profiles and Regulatory Gene Netwo...
Abstract Aging associated cognitive decline has been linked to dampened neural stem/progenitor cells...
Human neurons function over an entire lifetime, yet the molecular mechanisms which perform their fun...
Human neurons function over an entire lifetime, yet the molecular mechanisms which perform their fun...
Astrocytes contribute to a variety of functions in the brain, including homeostasis, synapse formati...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes contribute to a variety of functions in the brain, including homeostasis, synapse formati...
The prefrontal cortex (PFC) is one of the brain regions with more prominent changes in human aging. ...
Background: Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well...
BACKGROUND:Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well ...
Age changes in expression of inflammatory, synaptic, and neurotrophic genes are not well characteriz...
Summary: Gene expression studies suggest that aging of the human brain is determined by a complex in...
<div><p>Background</p><p>Age changes in expression of inflammatory, synaptic, and neurotrophic genes...
The decline of cognitive function occurs with aging, but the mechanisms responsible are unknown. Ast...
This article is part of a Special Issue entitled: Transcriptional Profiles and Regulatory Gene Netwo...
Abstract Aging associated cognitive decline has been linked to dampened neural stem/progenitor cells...
Human neurons function over an entire lifetime, yet the molecular mechanisms which perform their fun...
Human neurons function over an entire lifetime, yet the molecular mechanisms which perform their fun...
Astrocytes contribute to a variety of functions in the brain, including homeostasis, synapse formati...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes, the most numerous brain glia, play crucial roles in maintaining brain homeostasis, suppl...
Astrocytes contribute to a variety of functions in the brain, including homeostasis, synapse formati...