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Regulation of adult stem cell quiescence and its functions in the maintenance of tissue integrity
Adult stem cells are important for mammalian tissues, where they act as a cell reserve that
supports normal tissue turnover and can mount a regenerative response following acute …
supports normal tissue turnover and can mount a regenerative response following acute …
Dysregulation of adult hippocampal neuroplasticity in major depression: pathogenesis and therapeutic implications
Major depressive disorder (MDD) was previously hypothesized to be a disease of
monoamine deficiency in which low levels of monoamines in the synaptic cleft were …
monoamine deficiency in which low levels of monoamines in the synaptic cleft were …
The role of histone modifications: from neurodevelopment to neurodiseases
J Park, K Lee, K Kim, SJ Yi - Signal transduction and targeted therapy, 2022 - nature.com
Epigenetic regulatory mechanisms, including DNA methylation, histone modification,
chromatin remodeling, and microRNA expression, play critical roles in cell differentiation …
chromatin remodeling, and microRNA expression, play critical roles in cell differentiation …
[HTML][HTML] Spatial atlas of the mouse central nervous system at molecular resolution
Spatially charting molecular cell types at single-cell resolution across the 3D volume is
critical for illustrating the molecular basis of brain anatomy and functions. Single-cell RNA …
critical for illustrating the molecular basis of brain anatomy and functions. Single-cell RNA …
Neurogenesis in aging and age-related neurodegenerative diseases
Adult neurogenesis, the process by which neurons are generated in certain areas of the
adult brain, declines in an age-dependent manner and is one potential target for extending …
adult brain, declines in an age-dependent manner and is one potential target for extending …
The role of neurod genes in brain development, function, and disease
S Tutukova, V Tarabykin… - Frontiers in Molecular …, 2021 - frontiersin.org
Transcriptional regulation is essential for the correct functioning of cells during development
and in postnatal life. The basic Helix-loop-Helix (bHLH) superfamily of transcription factors is …
and in postnatal life. The basic Helix-loop-Helix (bHLH) superfamily of transcription factors is …
Prenatal interleukin 6 elevation increases glutamatergic synapse density and disrupts hippocampal connectivity in offspring
Early prenatal inflammatory conditions are thought to be a risk factor for different
neurodevelopmental disorders. Maternal interleukin-6 (IL-6) elevation during pregnancy …
neurodevelopmental disorders. Maternal interleukin-6 (IL-6) elevation during pregnancy …
Epigenetic mechanisms in neurogenesis
In the embryonic and adult brain, neural stem cells proliferate and give rise to neurons and
glia through highly regulated processes. Epigenetic mechanisms—including DNA and …
glia through highly regulated processes. Epigenetic mechanisms—including DNA and …
Radial glia in the zebrafish brain: Functional, structural, and physiological comparison with the mammalian glia
The neuroscience community has witnessed a tremendous expansion of glia research. Glial
cells are now on center stage with leading roles in the development, maturation, and …
cells are now on center stage with leading roles in the development, maturation, and …
Chromatin remodeling BAF (SWI/SNF) complexes in neural development and disorders
The ATP-dependent BRG1/BRM associated factor (BAF) chromatin remodeling complexes
are crucial in regulating gene expression by controlling chromatin dynamics. Over the last …
are crucial in regulating gene expression by controlling chromatin dynamics. Over the last …