Post-mortem Brain Tissue

Post-mortem brain tissue is neural tissue collected after death for systematic study of brain structure, molecular composition, and disease-related changes. Researchers preserve samples by methods such as fixation or rapid freezing, then examine cellular architecture, proteins, genes, and pathology using histology, immunohistochemistry, microscopy, or molecular assays. These analyses provide direct evidence of how neurodegenerative, psychiatric, developmental, and cerebrovascular disorders affect the human brain. When linked with clinical histories and careful documentation of post-mortem interval, tissue quality, and donor characteristics, brain specimens support disease validation, biomarker research, treatment development, and the interpretation of findings from living patients or experimental models.

Post-mortem Brain Tissue - Related Videos

Research

JoVE Journal - Medicine

Isolation of Cardiomyocyte Nuclei from Post-mortem Tissue

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Cited by 61 •

2012

Cardiac nuclei are isolated via density sedimentation and immunolabeled with antibodies against pericentriolar material 1 (PCM-1) to identify and sort cardiomyocyte nuclei by flow cytometry.

Research

JoVE Journal - Cancer Research
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A Protocol for Rapid Post-mortem Cell Culture of Diffuse Intrinsic Pontine Glioma (DIPG)

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Cited by 55 •

2017

This protocol describes a method for the rapid processing of post-mortem diffuse intrinsic pontine glioma samples for the establishment of patient-derived cell culture models or direct characterization of tumor and microenvironmental cells.

Laser Capture Microdissection to Isolate Purkinje Cells from a Human Post-Mortem Cerebellum Tissue

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2025

This video demonstrates how to isolate Purkinje cells from a human post-mortem cerebellar tissue using laser capture microdissection.

Research

JoVE Journal - Neuroscience
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Intact Histological Characterization of Brain-implanted Microdevices and Surrounding Tissue

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Cited by 6 •

2013

Here we present a histological method for capturing, labeling, optically clearing, and imaging the intact brain tissue interface around chronically implanted microdevices in rodent brain tissue. Results from the techniques comprising this method are useful for understanding the impact of various penetrating brain-implants on their surrounding tissue.

Autoradiographic Measurements of [14C]-Iodoantipyrine in Rat Brain Following Central Post-Stroke Pain

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Cited by 1 •

2016

We present a protocol to measure [14C]-iodoantipyrine (IAP) uptake and assess the activation of neural substrates that are involved in central post-stroke pain (CPSP) in a rodent model.

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