Agarose Block Trimming

Agarose block trimming is the preparation of an agarose-embedded tissue block by removing excess gel and shaping its surfaces for sectioning, an important step in producing consistent neuroscience specimens. After tissue is oriented and immobilized in solidified agarose, a blade trims the block to expose the target region, create a flat cutting face, and reduce material that could interfere with vibratome or microtome sectioning. Proper trimming improves block stability, section quality, and anatomical orientation, supporting the preparation of brain slices for microscopy, histological staining, fluorescent imaging, and other analyses of neural structure.

Agarose Block Trimming - Related Videos

Education

JoVE Core - Statistics

Trimmed Mean

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2023

While measuring the mean of a data set, care needs to be taken when associating the mean to its central tendency. The same goes for the arithmetic mean, the geometric mean, or the harmonic mean. This is because the presence of a single outlier data value can significantly affect the mean. That is, the mean is sensitive to fluctuations in the data set. Although certain measures of central tendency are not sensitive to outliers, there are alternative versions of the mean that get around the...

Research

JoVE Journal - Biology

Chemically-blocked Antibody Microarray for Multiplexed High-throughput Profiling of Specific Protein Glycosylation in Complex Samples

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Cited by 6 •

2012

In this study, we describe an improved protocol for a multiplexed high-throughput antibody microarray with lectin detection method that can be used in glycosylation profiling of specific proteins. This protocol features new reliable reagents and significantly reduces the time, cost, and lab equipment requirements as compared to the previous procedure.

Using Linear Agarose Channels to Study Drosophila Larval Crawling Behavior

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Cited by 12 •

2016

The Drosophila larva is a powerful model system to study neural control of behavior. This publication describes the use of linear agarose channels to elicit sustained bouts of linear crawling and methods to quantify the dynamics of larval structures during repetitive crawling behavior.

Agarose-Embedded Electroporation-Assisted Gene Transfer in Mouse Cortical Interneuron Progenitors

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2025

Source: Denaxa, M., el al., Transplantation of Chemogenetically Engineered Cortical Interneuron Progenitors into Early Postnatal Mouse Brains. J. Vis. Exp. (2019)This video demonstrates the procedure for injecting a plasmid vector carrying the gene of interest into interneuron progenitors in an embryonic brain slice, followed by electroporation for plasmid entry and gene expression. These modified progenitors can later be used for treating brain disorders.

Research

JoVE Journal - Biochemistry
Free Sample

Stabilizing Protein and Protein—RNA Condensates in Low-Melting Agarose Hydrogels for Quantitative Biophysical Measurements

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2026

Here, we present a robust method to physically immobilize liquid–liquid phase-separated condensates within a porous low-melting agarose hydrogel matrix without disrupting their internal liquid dynamics. The approach minimizes droplet sedimentation, coalescence, and surface-wetting artifacts, enabling reproducible imaging and quantitative biophysical analysis over periods of hours.

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