Hypoxia Reoxygenation Model

The hypoxia-reoxygenation model is an experimental system that reproduces cycles of reduced oxygen availability followed by restoration of normal oxygen levels, allowing researchers to study cellular responses to oxygen fluctuations. Cells or developing tissues undergo controlled hypoxia and subsequent reoxygenation, which can alter metabolism, generate oxidative stress, and activate signaling pathways involved in survival, injury, and repair. In developmental biology, this model helps investigate how oxygen instability affects embryonic growth, tissue formation, vascular development, and differentiation. It also provides a controlled platform for evaluating protective mechanisms and potential interventions relevant to developmental disorders and oxygen-related tissue damage.

Hypoxia Reoxygenation Model - Related Videos

Research

JoVE Journal - Medicine

A Hypoxia-Reoxygenation Injury Model in Self-Assembling Human Cardioids

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2026

Self-assembling human cardiac organoids (hCOs) are an emerging system for modeling human cardiac development and disease. Here, a methodology for generating and injuring hCOs with hypoxia-reoxygenation and details of expected histological and functional outcomes after injury are provided.

Research

JoVE Journal - Biology
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Modeling Hypoxia/Reoxygenation Injury in Proximal Tubular Epithelial Cells

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2025

Here, we describe an in vitro protocol to model hypoxia/reoxygenation damage in the highly metabolic proximal tubular epithelial cells. This model is designed to induce metabolic stress-induced damage, which can be measured through the expression of proximal tubule damage markers and assessment of mitochondrial respiratory function.

Human Primary Trophoblast Cell Culture Model to Study the Protective Effects of Melatonin Against Hypoxia/reoxygenation-induced Disruption

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Cited by 35 •

2016

This manuscript presents a unique in vitro model of immunopurified human villous cytotrophoblast cells cultured under hypoxia/reoxygenation. This model is suitable to study the protective effects of promising treatments, such as melatonin, on pregnancy complications associated with increased oxidative stress and altered placental function.

Oxygen-Glucose Deprivation and Reoxygenation as an In Vitro Ischemia-Reperfusion Injury Model for Studying Blood-Brain Barrier Dysfunction

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Cited by 46 •

2015

Ischemia-Reperfusion (IR) injury is associated with a high rate of morbidity and mortality. The goal of the in vitro model of oxygen-glucose deprivation and reoxygenation (OGD-R) described here is to assess the effects of ischemia reperfusion injury on a variety of cells, particularly in blood-brain barrier (BBB) endothelial cells.

A Model to Simulate Clinically Relevant Hypoxia in Humans

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Cited by 1 •

2016

Hypoxia simulation in humans has usually been performed by inhaling hypoxic gas mixtures. For this study, apneic divers were used to simulate dynamic hypoxia in humans. Additionally, physiological changes in desaturation and re-saturation kinetics were evaluated with non-invasive tools such as Near-Infrared-Spectroscopy (NIRS) and peripheral oxygenation saturation (SpO2).

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