Isolectin B4

Isolectin B4 (IB4) is a plant-derived lectin from Griffonia simplicifolia that binds specific alpha-D-galactosyl residues on cell-surface glycoconjugates, making it a useful histochemical marker in neuroscience. When applied to fixed tissue or cultured cells, fluorescently labeled IB4 attaches to these carbohydrate motifs and reveals the distribution of cells expressing compatible glycans. In sensory neuroscience, IB4 commonly identifies a subset of small-diameter, nonpeptidergic primary sensory neurons and their axonal projections, supporting studies of nociception, peripheral nerve organization, and pain-related plasticity. IB4 labeling can also complement neuronal markers and anatomical tracing methods to distinguish cellular populations in experimental models.

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Research

JoVE Journal - Neuroscience

Organotypic Hippocampal Slice Cultures As a Model to Study Neuroprotection and Invasiveness of Tumor Cells

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Cited by 18 •

2017

Organotypic hippocampal slice cultures (OHSC) represent an in vitro model that simulates the in vivo situation very well. Here we describe a vibratome-based improved slicing protocol to obtain high quality slices for use in assessing the neuroprotective potential of novel substances or the biological behavior of tumor cells.

Research

JoVE Journal - Biology
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Evaluating the Effect of Coated Filters and Pre-Filters on the Infectivity and Concentration of Aerosolized Phi6 Virus

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2026

Here, we present a study to evaluate the anti-viral efficacy of copper- and silver-based surface coatings on air filters. Using a bioaerosol chamber and Phi6 bacteriophage, this method quantifies viral inactivation and mechanical filtration efficiency for self-sanitizing indoor air technologies.

Methods to Classify Cytoplasmic Foci as Mammalian Stress Granules

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Cited by 33 •

2017

Stress Granules (SGs) are nonmembranous cytoplasmic structures that form in cells exposed to a variety of stresses. SGs contain mRNAs, RNA-binding proteins, small ribosomal subunits, translation-related factors, and various cell signaling proteins. This protocol describes a workflow that uses several experimental approaches to detect, characterize, and quantify bona fide SGs.

A Novel Mammary Fat Pad Transplantation Technique to Visualize the Vessel Generation of Vascular Endothelial Stem Cells

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Cited by 1 •

2017

This work demonstrates a novel approach to assess the proliferation, differentiation, and vessel-forming potential of vascular endothelial stem cells (VESCs) through mammary fat pad transplantation followed by whole-mount tissue preparation for microscopic observation. A lineage tracing strategy to investigate the behavior of VESCs in vivo is also presented.

Imaging Cleared Embryonic and Postnatal Hearts at Single-cell Resolution

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Cited by 8 •

2016

We describe a protocol to volumetrically image fluorescent protein labeled cells deep inside intact embryonic and postnatal hearts. Utilizing tissue-clearing methods in combination with whole mount staining, single fluorescent protein-labeled cells inside an embryonic or postnatal heart can be imaged clearly and accurately.

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