3d Ex Vivo Culture

3D ex vivo culture is a laboratory method that maintains cells, tissues, or tumor samples outside the body in a three-dimensional environment that more closely reflects native tissue architecture than conventional two-dimensional culture. By preserving cell–cell interactions, extracellular matrix contacts, and tissue organization under controlled nutrient and oxygen conditions, these cultures can retain important features of the original sample. In cancer research, tumor organoids, explants, and patient-derived cultures support investigation of tumor growth, invasion, drug response, and treatment resistance. They can complement animal models and help evaluate therapies in biologically relevant systems, advancing personalized cancer research while reducing reliance on oversimplified cell models.

3d Ex Vivo Culture - Related Videos

Research

JoVE Journal - Biology

A System for ex vivo Culturing of Embryonic Pancreas

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Cited by 23 •

2012

Here, we describe a method for isolation, culture and manipulation of mouse embryonic pancreas. This represents an excellent ex vivo system for studying various aspects of pancreatic development, including morphogenesis, differentiation and growth. Pancreatic bud explants can be cultured for several days and used in a range of different applications, including whole-mount immunofluorescence and live imaging.

Research

JoVE Journal - Bioengineering
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Ex Vivo Perfusion Culture of Large Blood Vessels in a 3D Printed Bioreactor

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Cited by 1 •

2023

This protocol presents the setup and operation of a newly developed, 3D printed bioreactor for the ex vivo culture of blood vessels in perfusion. The system is designed to be easily adopted by other users, practical, affordable, and adaptable to different experimental applications, such as basic biology and pharmacological studies.

Preparation of 3D Collagen Gels and Microchannels for the Study of 3D Interactions In Vivo

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Cited by 16 •

2016

Collagen is a core component of the ECM, and provides essential cues for several cellular processes ranging from migration to differentiation and proliferation. Provided here is a protocol for embedding cells within 3D collagen hydrogels, and a more advanced technique for generating randomized or aligned collagen matrices using PDMS microchannels.

Research

JoVE Journal - Medicine
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3D-Neuronavigation In Vivo Through a Patient's Brain During a Spontaneous Migraine Headache

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Cited by 14 •

2014

In this study, the authors report for the first time a novel 3D-Immersive & Interactive Neuronavigation (3D-IIN) through the impact of a spontaneous migraine headache attack in the μ-opioid system of a patient's brain in vivo.

Preparation of Chitosan-based Injectable Hydrogels and Its Application in 3D Cell Culture

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Cited by 13 •

2017

Here we describe a facile preparation of chitosan-based injectable hydrogels using dynamic imine chemistry. Methods to adjust the hydrogel’s mechanical strength and its application in 3D cell culture are presented.

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