Neuronal Rna Profiling

Neuronal RNA profiling is the analysis of RNA molecules produced by neurons to characterize gene expression and cellular state. It typically involves isolating RNA from neuronal populations or individual cells, converting messenger RNA into complementary DNA, and measuring transcripts through sequencing or targeted quantification; transcript abundance can reveal cell-type-specific programs and responses to stimuli. In chemistry and neurobiology, these profiles help identify molecular signatures associated with development, synaptic activity, disease, and drug exposure. Comparing RNA patterns across conditions can reveal pathway changes, support biomarker discovery, and guide studies of neuronal function and therapeutic targets.

Neuronal Rna Profiling - Related Videos

Research

JoVE Journal - Medicine

Calcified Artery Preparation and Processing with Preserved Morphology and RNA for Digital Spatial Profiling

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2026

This protocol includes a step-by-step workflow for calcified vascular specimens: tissue handling, decalcification, RNA validation, calcification level detection, and region-of-interest selection strategies on the Nanostring GeoMx Digital Spatial Profiler (DSP). The goal is to present a comprehensive method for preserving vascular tissue morphology and RNA for reliable spatial transcriptomic analysis.

Single-cell Profiling of Developing and Mature Retinal Neurons

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Cited by 13 •

2012

A method for the isolation of single retinal cells and subsequent amplification of their cDNAs is described. Single-cell transcriptomics reveals the degree of cellular heterogeneity present in a tissue and uncovers new marker genes for rare cell populations. The accompanying protocol can be adjusted to suit many different cell types.

Education

JoVE Science Education - Advanced Biology

Expression Profiling with Microarrays

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2023

Microarrays are important tools for profiling gene expression, and are based on complementary binding between probes that are attached to glass chips and nucleic acids derived from samples. Using these arrays, scientists can simultaneously evaluate the expression of thousands of genes. In addition, the expression profiles of different cells or tissue types can be compared, allowing researchers to deduce how the expression of different genes change during biological processes, and thus gain...

Metabolic Labeling of Newly Transcribed RNA for High Resolution Gene Expression Profiling of RNA Synthesis, Processing and Decay in Cell Culture

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Cited by 105 •

2013

Total cellular RNA provides a poor template for studying short-term changes in RNA synthesis and decay as well as the kinetics of RNA processing. Here, we describe metabolic labeling of newly transcribed RNA with 4-thiouridine followed by thiol-specific biotinylation and purification of newly transcribed RNA allowing to overcome these limitations.

RNA-Seq

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2023

Among different methods to evaluate gene expression, the high-throughput sequencing of RNA, or RNA-seq. is particularly attractive, as it can be performed and analyzed without relying on prior available genomic information. During RNA-seq, RNA isolated from samples of interest is used to generate a DNA library, which is then amplified and sequenced. Ultimately, RNA-seq can determine which genes are expressed, the levels of their expression, and the presence of any previously unknown transcripts.

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