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Updated: Mar 29, 2026

A Model to Simulate Clinically Relevant Hypoxia in Humans
Published on: December 22, 2016
Pharmacological models and approaches for pathophysiological conditions associated with hypoxia and oxidative stress
Jorge G Farías1, Emilio A Herrera2, Catalina Carrasco-Pozo3
1Facultad de Ingeniería y Ciencias, Departamento de Ingeniería Química, Universidad de la Frontera, Casilla 54-D, Temuco, Chile.
Abstract:
Hypoxia is the failure of oxygenation at the tissue level, where the reduced oxygen delivered is not enough to satisfy tissue demands. Metabolic depression is the physiological adaptation associated with reduced oxygen consumption, which evidently does not cause any harm to organs that are exposed to acute and short hypoxic insults. Oxidative stress (OS) refers to the imbalance between the generation of reactive oxygen species (ROS) and the ability of endogenous antioxidant systems to scavenge ROS, where ROS overwhelms the antioxidant capacity. Oxidative stress plays a crucial role in the pathogenesis of diseases related to hypoxia during intrauterine development and postnatal life. Thus, excessive ROS are implicated in the irreversible damage to cell membranes, DNA, and other cellular structures by oxidizing lipids, proteins, and nucleic acids. Here, we describe several pathophysiological conditions and in vivo and ex vivo models developed for the study of hypoxic and oxidative stress injury. We reviewed existing literature on the responses to hypoxia and oxidative stress of the cardiovascular, renal, reproductive, and central nervous systems, and discussed paradigms of chronic and intermittent hypobaric hypoxia. This systematic review is a critical analysis of the advantages in the application of some experimental strategies and their contributions leading to novel pharmacological therapies.
Insights
Hypoxia, or tissue oxygen deficiency, can lead to oxidative stress (OS) and cell damage. This review explores models and findings on hypoxia and OS injury, paving the way for new therapies.
Area of Science:
- Physiology
- Pathophysiology
- Biochemistry
Background:
- Hypoxia is insufficient oxygen supply for tissue demands.
- Metabolic depression is a protective adaptation to short-term hypoxia.
- Oxidative stress (OS) arises from an imbalance in reactive oxygen species (ROS) and antioxidant defenses.
Purpose of the Study:
- To review pathophysiological conditions and models of hypoxic and oxidative stress injury.
- To analyze responses of major organ systems to hypoxia and OS.
- To discuss chronic and intermittent hypobaric hypoxia paradigms.
Main Methods:
- Systematic literature review.
- Analysis of in vivo and ex vivo experimental models.
- Examination of cardiovascular, renal, reproductive, and central nervous system responses.
Main Results:
- Oxidative stress exacerbates hypoxic injury by damaging cellular components.
- Hypoxia and OS are implicated in intrauterine and postnatal developmental diseases.
- Experimental models aid in understanding injury mechanisms and developing treatments.
Conclusions:
- Understanding hypoxia-oxidative stress interactions is critical for disease pathogenesis.
- Novel pharmacological therapies can be developed from studying experimental models.
- This review critically analyzes strategies for studying and treating hypoxic and oxidative stress injury.
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