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Published on: January 12, 2018
Preterm birth and oxidative stress: Effects of acute physical exercise and hypoxia physiological responses
Agnès Martin1, Camille Faes2, Tadej Debevec3
1Univ Lyon, Université Claude Bernard Lyon 1, Laboratoire Interuniversitaire de Biologie de la Motricité EA 7424, Villeurbanne, France; Master BioSciences, Ecole Normale Supérieure de Lyon, Université Claude Bernard Lyon 1, Univ Lyon, France.
Insights
Preterm birth elevates oxidative stress (OS) in newborns, potentially leading to lifelong health issues. This review explores the long-term impacts of OS from preterm birth into adulthood.
Area of Science:
- Neonatal Health
- Oxidative Stress Research
- Longitudinal Health Studies
Background:
- Preterm birth affects 1 in 10 newborns globally, causing immediate health challenges.
- Preterm infants have immature systems and undergo medical interventions, increasing oxidative stress (OS).
- Chronic OS from preterm birth may link to adult non-communicable diseases like diabetes and hypertension.
Purpose of the Study:
- To review the consequences of preterm birth on oxidative stress levels from infancy to adulthood.
- To explore the impact of physical activity and hypoxia on OS in preterm individuals.
Main Methods:
- Literature review synthesizing current knowledge on preterm birth and OS.
- Exploration of factors influencing redox balance in preterm populations.
Main Results:
- Preterm birth leads to elevated OS in newborns due to environmental and physiological factors.
- Long-term OS elevation in preterm individuals may contribute to chronic diseases.
- Physical activity and hypoxia can modulate OS in preterm populations.
Conclusions:
- Understanding long-term OS consequences of preterm birth is crucial for preventative health strategies.
- Further research is needed on OS modulation through lifestyle factors in preterm individuals.
Abstract:
Preterm birth is a global health issue that can induce lifelong medical sequela. Presently, at least one in ten newborns are born prematurely. At birth, preterm newborns exhibit higher levels of oxidative stress (OS) due to the inability to face the oxygen rich environment in which they are born into. Moreover, their immature respiratory, digestive, immune and antioxidant defense systems, as well as the potential numerous medical interventions following a preterm birth, such as oxygen resuscitation, nutrition, phototherapy and blood transfusion further contribute to high levels of OS. Although the acute effects seem well established, little is known regarding the long-term effects of preterm birth on OS. This matter is especially important given that chronically elevated OS levels may persist into adulthood and consequently contribute to the development of numerous non-communicable diseases observed in people born preterm such as diabetes, hypertension or lung disorders. The purpose of this review is to summarize the current knowledge regarding the consequences of preterm birth on OS levels from newborn to adulthood. In addition, the effects of physical activity and hypoxia, both known to disrupt redox balance, on OS modulation in preterm individuals are also explored.
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