Rna Probe Design

RNA probe design is the process of creating labeled RNA molecules that selectively bind complementary messenger RNA sequences, allowing researchers to detect specific gene transcripts. Probe sequences are selected for target specificity, appropriate length, and minimal secondary structure, then used under controlled hybridization and washing conditions so complementary base pairing generates a measurable signal while nonspecific binding is reduced. In developmental biology, RNA probes support in situ hybridization and related assays that map when and where genes are expressed in embryos, tissues, and organoids, helping reveal cell identities, tissue patterning, and developmental changes.

Rna Probe Design - Related Videos

Research

JoVE Journal - Neuroscience

Custom-made Microdialysis Probe Design

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Cited by 9 •

2015

Microdialysis is a commonly used technique in neuroscience research. Therefore commercial probes are in great demand.In this work a probe assembly is explained in detail to build a reliable, concentric, custom-made microdialysis probe for less than $10.

Probe Hybridization and Signal Amplification in RNA In Situ Hybridization: A Technique for Detecting Specific RNA Sequences in Tissue Sections

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2023

This video describes a sequential hybridization strategy that involves hybridizing mRNA probes to specific target mRNA. Following probe hybridization, signal amplification is performed to enhance resolution via reduction of signal-to-noise ratio during RNA-CISH of histological samples.

In Situ Hybridization Using Oligonucleotide Probes to Study RNA Expression in Rat Brain Sections

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2025

This video demonstrates the detection of serotonin receptor RNA synthesis using oligonucleotide probes in rat brain tissue affected by serotonin syndrome. The protocol includes tissue pretreatment, probe hybridization, and enzymatic detection to visualize and quantify serotonin receptor RNA expression under a microscope.

Research

JoVE Journal - Neuroscience
Free Sample

Design and Fabrication of Ultralight Weight, Adjustable Multi-electrode Probes for Electrophysiological Recordings in Mice

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Cited by 29 •

2014

Understanding the neural substrates of behavior requires brain circuit ensemble recording. Because of its genetic tractability, the mouse offers a model for circuit dissection and disease mimicry. Here, a method of designing and fabricating miniaturized probes is described that is suitable for targeting deep brain structure in the mouse.

Atom Probe Tomography Studies on the Cu(In,Ga)Se2 Grain Boundaries

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Cited by 29 •

2013

In this work, we describe the use of the atom-probe tomography technique for studying the grain boundaries of the absorber layer in a CIGS solar cell. A novel approach to prepare the atom probe tips containing the desired grain boundary with a known structure is also presented here.

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