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Analysis of Oxidative Stress in Zebrafish Embryos
Published on: July 7, 2014
Oxidative stress and antioxidant strategies in newborns
Serafina Perrone1, Simona Negro, Maria Luisa Tataranno
1Department of Pediatrics, Obstetrics and Reproductive Medicine, University of Siena, Italy.
Insights
Newborns, particularly preterm infants, face significant oxidative stress (OS) due to increased free radicals (FR). Strategies like oxygen control and antioxidants show promise for neuroprotection against FR damage.
Area of Science:
- Neonatal Medicine
- Biochemistry
- Neuroscience
Background:
- Oxidative stress (OS) results from an imbalance between prooxidant and antioxidant factors, causing cellular damage.
- Newborns, especially preterm infants, are vulnerable to OS and free radical (FR) toxicity due to hyperoxia and immature antioxidant systems.
- Perinatal factors like inflammation, hypoxia, and ischemia exacerbate OS in newborns.
Purpose of the Study:
- To review the pathogenesis of newborn diseases caused by free radicals (FR).
- To explore antioxidant strategies for reducing oxidative stress (OS) and its damaging effects in newborns.
- To highlight potential neuroprotective interventions for perinatal brain lesions.
Main Methods:
- Literature review of oxidative stress (OS) in newborns.
- Analysis of pathophysiological mechanisms of FR-mediated diseases.
- Evaluation of antioxidant strategies and their efficacy in animal studies.
Main Results:
- Preterm infants exhibit immature antioxidant systems, increasing susceptibility to FR damage.
- Understanding OS mechanisms aids in developing targeted neuroprotective therapies.
- Strict oxygen control, lutein, melatonin, and hypothermia demonstrate neuroprotective potential.
Conclusions:
- Oxidative stress (OS) plays a critical role in preterm newborn morbidity.
- Targeted antioxidant strategies offer promising neuroprotection against FR-induced damage.
- Further research into OS pathogenesis can lead to improved therapeutic interventions for newborns.
Abstract:
Oxidative stress (OS) is defined as an unbalance between prooxidant and antioxidant factors that can lead to cellular and tissue damage.The newborn, especially if preterm, is highly prone to OS and to the toxic effect of free radicals (FR). At birth, the newborn is exposed to a relatively hyperoxic environment caused by an increased oxygen bioavailability with greatly enhanced generation of FR. Additional sources (inflammation, hypoxia, ischemia, glutamate, and free iron release) occur magnifying OS. In the preterm baby, the perinatal transition is accompanied by the immaturity of the antioxidant systems and the reduced ability to induce efficient homeostatic mechanisms designed to control overproduction of cell-damaging FR. Improved understanding of the pathophysiological mechanism involved in perinatal brain lesions helps to identify potential targets for neuroprotective interventions, and the knowledge of these mechanisms has enabled scientists to develop new therapeutic strategies that have confirmed their neuroprotective effects in animal studies. Considering the growing role of OS in preterm newborn morbidity in respect to the higher risk of FR damage in these babies, a strict control of oxygen administration, lutein, melatonin, and hypothermia show great promise as potential neuroprotectants. This review provides an overview of the pathogenesis of free radical-mediated diseases of the newborn and the antioxidant strategies for now tested to reduce the OS and its damaging effects.
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