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Modeling Encephalopathy of Prematurity Using Prenatal Hypoxia-ischemia with Intra-amniotic Lipopolysaccharide in Rats
Published on: November 20, 2015
[Oxidative stress after preterm birth: origins, biomarkers, and possible therapeutic approaches]
C Yzydorczyk1, D Mitanchez2, C Buffat3
1Service de pédiatrie, CHUV, 1011 Lausanne, Suisse; Faculté de biologie et de médecine, UNIL, 1011 Lausanne, Suisse.
Insights
Preterm infants are vulnerable to oxidative stress and related diseases due to underdeveloped antioxidant defenses. Research is exploring biomarkers and therapies like melatonin to combat this neonatal challenge.
Area of Science:
- Neonatology
- Oxidative Stress Research
- Perinatal Medicine
Background:
- Preterm infant survival has improved, but they remain susceptible to oxidative stress-related disorders.
- These conditions include retinopathy, bronchopulmonary dysplasia, periventricular leukomalacia, and necrotizing enterocolitis.
- Preterm infants have lower antioxidant capacity, increasing vulnerability to oxidative damage, especially with supplemental oxygen.
Purpose of the Study:
- To highlight the challenges of oxidative stress in preterm infants.
- To discuss the importance of identifying biomarkers for oxidative stress.
- To explore potential therapeutic strategies for preventing and treating oxidative stress-related complications.
Main Methods:
- Review of existing literature on oxidative stress in neonatology.
- Discussion of physiological differences in preterm infants contributing to oxidative stress.
- Exploration of potential biomarkers and therapeutic agents.
Main Results:
- Oxidative stress causes significant cellular damage (lipids, proteins, DNA) in preterm infants.
- Biomarkers like 8-iso-prostaglandin F2α and malondialdehyde adducts are crucial for monitoring.
- No validated therapeutic strategies currently exist, but breastfeeding and melatonin show promise.
Conclusions:
- Preterm infants require careful management due to heightened sensitivity to oxidative stress.
- Further research into biomarkers and treatments like melatonin is essential.
- Breastfeeding is a key measure to enhance antioxidant status in preterm infants.
Abstract:
The survival of preterm babies has increased over the last few decades. However, disorders associated with preterm birth, known as oxygen radical diseases of neonatology, such as retinopathy, bronchopulmonary dysplasia, periventricular leukomalacia, and necrotizing enterocolitis are severe complications related to oxidative stress, which can be defined by an imbalance between oxidative reactive species production and antioxidant defenses. Oxidative stress causes lipid, protein, and DNA damage. Preterm infants have decreased antioxidant defenses in response to oxidative challenges, because the physiologic increase of antioxidant capacity occurs at the end of gestation in preparation for the transition to extrauterine life. Therefore, preterm infants are more sensitive to neonatal oxidative stress, notably when supplemental oxygen is being delivered. Furthermore, despite recent advances in the management of neonatal respiratory distress syndrome, controversies persist concerning the oxygenation saturation targets that should be used in caring for preterm babies. Identification of adequate biomarkers of oxidative stress in preterm infants such as 8-iso-prostaglandin F2α, and adduction of malondialdehyde to hemoglobin is important to promote specific therapeutic approaches. At present, no therapeutic strategy has been validated as prevention or treatment against oxidative stress. Breastfeeding should be considered as the main measure to improve the antioxidant status of preterm infants. In the last few years, melatonin has emerged as a protective molecule against oxidative stress, with antioxidant and free-radical scavenger roles, in experimental and preliminary human studies, giving hope that it can be used in preterm infants in the near future.
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