In recent decades, our understanding of the molecular changes involved in neurodegenerative diseases has been transformed. Single-cell RNA sequencing and single-nucleus RNA sequencing technologies have been applied to provide cellular and molecular details of the brain at the single-cell level. This has expanded our knowledge of the central nervous system and provided insights into the molecular vulnerability of brain cell types and underlying mechanisms in neurodegenerative diseases. In this review, we highlight the recent advances and findings related to neurodegenerative diseases using these cutting-edge technologies
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
Advancements in RNA sequencing technology in past decade have underlined its power for elucidating t...
DNA copy number variations (CNVs) have previously been reported in human cortical neurons from non-d...
In recent decades, our understanding of the molecular changes involved in neurodegenerative diseases...
Using RNA sequencing, we can examine distinctions between different cell types and capture a moment ...
Neurobiological disorders are highly prevalent medical conditions that contribute to significant mor...
Using RNA sequencing, we can examine distinctions between different cell types and capture a moment ...
In the past decade, single-cell technologies have proliferated and improved from their technically c...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Technical and experimental advances in microaspiration techniques, RNA amplification, quantitative r...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
The continued discovery of basic pathologic mechanisms underlying neuropsychiatric illnesses will be...
Neurodegenerative diseases constitute one of the single most important public health challenges of t...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
Advancements in RNA sequencing technology in past decade have underlined its power for elucidating t...
DNA copy number variations (CNVs) have previously been reported in human cortical neurons from non-d...
In recent decades, our understanding of the molecular changes involved in neurodegenerative diseases...
Using RNA sequencing, we can examine distinctions between different cell types and capture a moment ...
Neurobiological disorders are highly prevalent medical conditions that contribute to significant mor...
Using RNA sequencing, we can examine distinctions between different cell types and capture a moment ...
In the past decade, single-cell technologies have proliferated and improved from their technically c...
Recent technical advances have enabled transcriptomics experiments at an unprecedented scale, and si...
Technical and experimental advances in microaspiration techniques, RNA amplification, quantitative r...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
Single-cell sequencing technologies, including transcriptomic and epigenomic assays, are transformin...
The continued discovery of basic pathologic mechanisms underlying neuropsychiatric illnesses will be...
Neurodegenerative diseases constitute one of the single most important public health challenges of t...
Abstract Single-cell RNA-sequencing (scRNA-seq) is revolutionizing our understanding of the genomic,...
Abstract The mammalian central nervous system (CNS) is one of the most complex systems, with thousan...
Advancements in RNA sequencing technology in past decade have underlined its power for elucidating t...
DNA copy number variations (CNVs) have previously been reported in human cortical neurons from non-d...