3d Organotypic Culture

3D organotypic culture is a laboratory model that maintains cells in a three-dimensional arrangement resembling the structure and microenvironment of native tissue. Cells grow within or on a supportive extracellular matrix, enabling cell-cell and cell-matrix interactions, tissue architecture, and spatial gradients that are often absent from two-dimensional cultures. In cancer research, these models can reproduce features of tumor growth, invasion, stromal interactions, and treatment response, providing a controlled system for studying disease mechanisms and evaluating potential therapies. By bridging simplified cell cultures and complex animal models, 3D organotypic culture supports more physiologically relevant investigations of tumor biology.

3d Organotypic Culture - Related Videos

Research

JoVE EoE - Colorectal Cancer

Laser Microdissection: A Technique to Isolate Invading Colorectal Cancer cells from a 3D Organotypic Culture Model

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2023

The video describes the laser dissection of the 3D organotypic co-culture model with micron-level precision. In 3D organotypic models, stromal constituents such as fibroblasts are 3-dimensionally co-cultured with cancer epithelial cells. The 3D model serves as an experimental tool that enables invasion and cancer-stroma interactions to be studied in near-physiological conditions.

Organotypic 3D Skin Culture: A Cassette-based In Vitro Culture Technique to Regenerate Human Epidermis on Acellular Dermis

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2023

This video protocol describes a cassette-based in vitro culture technique to generate human organotypic skin using epidermal keratinocytes and devitalized human dermis. They mimic the function and physiology of their in vivo tissue counterparts.

Research

JoVE Journal - Medicine
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Coculture System with an Organotypic Brain Slice and 3D Spheroid of Carcinoma Cells

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Cited by 32 •

2013

The organotypic brain slice coculture with carcinoma cells enables visualizing morphological changes by fluorescence as well as bright field (video) microscopy during the process of carcinoma cell invasion of brain tissue. This model system also allows for cell exchange and replenishment approaches and offers a wide variety of manipulations and analyses.

3D Organotypic Co-culture Model Supporting Medullary Thymic Epithelial Cell Proliferation, Differentiation and Promiscuous Gene Expression

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Cited by 15 •

2015

Studying medullary thymic epithelial cells in vitro has been largely unsuccessful, as current 2D culture systems do not mimic the in vivo scenario. The 3D culture system described herein - a modified skin organotypic culture model - has proven superior in recapitulating mTEC proliferation, differentiation and maintenance of promiscuous gene expression.

Impact Assessment of Repeated Exposure of Organotypic 3D Bronchial and Nasal Tissue Culture Models to Whole Cigarette Smoke

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Cited by 41 •

2015

The aim of this protocol is to expose human organotypic 3D bronchial and nasal tissue models to mainstream cigarette smoke (CS) at the air-liquid interface. The impact of CS on the tissues is then investigated using a cytochrome P450 activity assay, a cilia beating measurement, and a systems biology approach.

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