Histochemistry Analysis

Histochemistry analysis is the study of chemical components and molecular markers within cells and tissues, providing structural and diagnostic information in medicine. It works by applying dyes, stains, or targeted reagents to tissue sections, where chemical reactions or selective binding produce localized signals that can be examined by microscopy. By linking tissue architecture with proteins, carbohydrates, lipids, nucleic acids, or disease-associated markers, histochemistry supports the identification and classification of pathological changes. It is used in clinical pathology and biomedical research to investigate disease mechanisms, distinguish tissue types, evaluate treatment-related changes, and strengthen the interpretation of biopsy and surgical specimens.

Histochemistry Analysis - Related Videos

Research

JoVE Journal - Neuroscience

Use of Synaptic Zinc Histochemistry to Reveal Different Regions and Laminae in the Developing and Adult Brain

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Cited by 8 •

2017

We describe a histochemical procedure that reveals characteristic laminar and areal zinc staining patterns in different brain regions. The zinc-staining pattern may be used in conjunction with other anatomical markers to reliably distinguish layers and regions in the developing and adult brain.

Research

JoVE Journal - Immunology and Infection
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Metabolic Mapping: Quantitative Enzyme Cytochemistry and Histochemistry to Determine the Activity of Dehydrogenases in Cells and Tissues

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Cited by 6 •

2018

Here, we present a protocol that can be used to microscopically visualize and quantify activity of dehydrogenases in cells and tissues and its kinetics, function and subcellular localization.

Visualization of Mitochondrial Respiratory Function using Cytochrome C Oxidase / Succinate Dehydrogenase (COX/SDH) Double-labeling Histochemistry

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Cited by 82 •

2011

The cytochrome c oxidase/sodium dehydrogenase (COX/SDH) double-labeling method allows for direct visualization of mitochondrial respiratory enzyme deficiencies in fresh-frozen tissue sections. This is a straightforward histochemical technique and is useful in investigating mitochondrial diseases, aging, and aging-related disorders.

Preparation and Analysis of In Vitro Three Dimensional Breast Carcinoma Surrogates

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Cited by 6 •

2016

We demonstrate a method to generate 3D breast cancer surrogates, which can be cultured using a perfusion bioreactor system to deliver oxygen and nutrients. Following growth, surrogates are fixed and processed to paraffin for evaluation of parameters of interest. The evaluation of one such parameter, cell density, is explained.

Flat Mount Imaging of Mouse Skin and Its Application to the Analysis of Hair Follicle Patterning and Sensory Axon Morphology

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Cited by 26 •

2014

Mammalian skin contains a diverse array of structures - such as hair follicles and nerve endings - that exhibit distinctive patterns of spatial organization. Analyzing skin as a flat mount takes advantage of the 2-dimensional geometry of this tissue to produce full-thickness high-resolution images of skin structures.

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