In Vitro Disease Model

An in vitro disease model is a laboratory system that reproduces selected features of a disease outside the body, often using cultured cells, tissues, or organoids. Researchers create disease-relevant conditions by introducing genetic changes, pathogens, drugs, or environmental stresses and then measure cellular, molecular, or functional responses with microscopy, biochemical assays, or other analytical methods. In medicine, these models help clarify disease mechanisms, compare healthy and diseased states, evaluate potential treatments, and identify biomarkers. Although they cannot capture every interaction within a living organism, in vitro disease models provide controlled, reproducible platforms that can complement animal studies and support more targeted therapeutic development.

In Vitro Disease Model - Related Videos

Research

JoVE Journal - Bioengineering
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Advanced 3D Liver Models for In vitro Genotoxicity Testing Following Long-Term Nanomaterial Exposure

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Cited by 21 •

2020

This procedure was established to be used for developing advanced 3D hepatic cultures in vitro, which can provide a more physiologically relevant assessment of the genotoxic hazards associated with nanomaterial exposures over both an acute or long-term, repeated dose regimes.

Research

JoVE EoE - Neurotherapeutics

Synergistic Photobiomodulation with a Dual-Wavelength Laser in an In Vitro Disease Model

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2025

Divide the transwell system into five groups that undergo various treatments.The first group serves as the control and consists of a co-culture of neuroblastoma and microglia cells.In the second group, treat the co-culturer with fibrillar β-amyloid (fAβ) alone. fAβ induces damage in neuroblastoma cells.In the third group, treat neuroblastoma cells with an 808-nanometer laser, then co-culture them with untreated microglia.The laser reduces oxidative stress, improving neuronal survival.In the...

Isolation of Human Primary Valve Cells for In vitro Disease Modeling

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Cited by 7 •

2021

This protocol describes the collection of human aortic valves extracted during surgical aortic valve replacement procedures or from cadaveric tissue, and the subsequent isolation, expansion, and characterization of patient specific primary valve endothelial and interstitial cells. Included are important details regarding the processes needed to ensure cell viability and phenotype specificity.

Reconstruction of the Blood-Brain Barrier In Vitro to Model and Therapeutically Target Neurological Disease

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Cited by 2 •

2023

The blood-brain barrier (BBB) has a crucial role in sustaining a stable and healthy brain environment. BBB dysfunction is associated with many neurological diseases. We have developed a 3D, stem-cell-derived model of the BBB to investigate cerebrovascular pathology, BBB integrity, and how the BBB is altered by genetics and disease.

In Vitro Modeling of Fat Deposition in Metabolic Dysfunction-Associated Steatotic Liver Disease

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Cited by 1 •

2024

This article describes the use of oleic acid-induced HepG2 cells as a model for metabolic dysfunction-associated steatotic liver disease.

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