Aberrant Crypt Foci

Aberrant crypt foci are clusters of enlarged, irregular, or more intensely staining colonic crypts that can represent some of the earliest visible changes in colorectal carcinogenesis. They arise when genetic and cellular alterations disrupt normal crypt architecture, epithelial proliferation, differentiation, and tissue renewal, producing abnormal glandular patterns detectable after staining, often with methylene blue. In medicine and biomedical research, investigators quantify these lesions in colon tissue and animal models to study tumor initiation, compare carcinogenic risk, and evaluate chemopreventive interventions. Although not every focus progresses to cancer, their number and morphology can provide a research marker of early colorectal neoplastic change and help clarify pathways underlying colorectal cancer development.

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JoVE EoE - Gastrointestinal Cancer

Intestinal Crypts Isolation: A Method to Isolate Whole Crypts from Small Intestine of Murine Model

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2023

In this video, we demonstrate a technique to isolate whole crypts from a mouse’s small intestine. The isolated whole crypts can be used to propagate long-lived and self-renewing 3D organoids in vitro.

Assessing DNA Damage Foci: To Identify Radiation-Induced DNA Damage Foci in Cancer Cell Line Using Immunofluorescence Staining

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2023

This video describes a protocol to detect radiation-induced DNA repair foci in the colon cancer cell lines using immunofluorescence staining. DNA repair proteins get activated at the DNA damage site; therefore, we can detect them using specific antibodies and visualize them under a fluorescence microscope.

Quantitation of γH2AX Foci in Tissue Samples

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Cited by 7 •

2010

Quantitation of DNA double-strand breaks on the basis of γH2AX foci has become an invaluable tool, particularly in radiation biology, for the evaluation of tissue radiosensitivity and effects of radiation modifying compounds. Here we demonstrate the use of an immunofluorescence assay for quantitation of γH2AX foci in tissue samples.

Quantification of γH2AX Foci in Response to Ionising Radiation

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Cited by 23 •

2010

Quantification of DNA double-strand streaks using γH2AX formation as a molecular marker has become an invaluable tool in radiation biology. Here we demonstrate the use of an immunofluorescence assay for quantification of γH2AX foci after exposure of cells to radiation.

Analysis of the Ambient Particulate Matter-induced Chromosomal Aberrations Using an In Vitro System

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Cited by 3 •

2016

This protocol describes techniques for the quantification and characterization of chromosomal aberrations in vitro in RAW264.7 mouse macrophages after treatment with ambient air particulate matter.

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