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1.
Dis Markers ; 2017: 2728103, 2017.
Article in English | MEDLINE | ID: mdl-29118462

ABSTRACT

OBJECTIVE: Neonates have a high risk of oxidative stress during anesthetic procedures. The predictive role of oxidative stress biomarkers on the occurrence of brain injury in the perioperative period has not been reported before. METHODS: A prospective cohort study of patients requiring major surgery in the neonatal period was conducted. Biomarker levels of nonprotein-bound iron (NPBI) in plasma and F2-isoprostane in plasma and urine before and after surgical intervention were determined. Brain injury was assessed using postoperative MRI. RESULTS: In total, 61 neonates were included, median gestational age at 39 weeks (range 31-42) and weight at 3000 grams (1400-4400). Mild to moderate brain lesions were found in 66%. Logistic regression analysis showed a significant difference between plasma NPBI in patients with nonparenchymal injury versus no brain injury: 1.34 umol/L was identified as correlation threshold for nonparenchymal injury (sensitivity 67%, specificity 91%). In the multivariable analysis, correcting for GA, no other significant relation was found with the oxidative stress biomarkers and risk factors. CONCLUSION: Oxidative stress seems to occur during anaesthesia in this cohort of neonates. Plasma nonprotein-bound iron showed to be associated with nonparenchymal injury after surgery, with values of 1.34 umol/L or higher. Risk factors should be elucidated in a more homogeneous patient group.


Subject(s)
Brain Injuries/blood , F2-Isoprostanes/blood , Oxidative Stress , Postoperative Complications/blood , Anesthesia, General/adverse effects , Biomarkers/blood , Brain Injuries/diagnostic imaging , Brain Injuries/etiology , Case-Control Studies , Female , Humans , Infant, Newborn , Iron/blood , Laparotomy/adverse effects , Male , Postoperative Complications/diagnostic imaging , Postoperative Complications/etiology , Thoracotomy/adverse effects
2.
J Biol Regul Homeost Agents ; 31(1): 221-227, 2017.
Article in English | MEDLINE | ID: mdl-28337896

ABSTRACT

Maternal obesity is a chronic inflammatory state, which has been shown to induce increased levels of free fatty acids, reactive oxygen species and inflammatory cells. Recent evidence reveals increased levels of lipid peroxidation products in the plasma of obese women during pregnancy. The aim of this study was to test the hypothesis that maternal overweight or obesity is associated with increased oxidative stress (OS) in offspring. Two hundred and forty-five pregnant women and their newborns were prospectively enrolled. Mothers were divided in two groups: lean control - LC (n=175, Group I); overweight or obese (n=70, Group II) according to BMI ≥ 25 before pregnancy. Cord blood F2-isoprostanes (F2-IsoPs), as reliable markers of OS, were measured in all newborns. Lower 1 minute APGAR score and higher weight at discharge were found in Group II neonates, compared to those of Group I (p less than 0.05). Small for gestational age (SGA) newborns of both groups showed increased levels of F2-IsoPs than appropriate (AGA) or large (LGA) for gestational age (GA) (p less than 0.01). SGA newborns of Group II had higher F2-IsoPs levels compared to SGA of Group I (p less than 0.01), which were significantly correlated to maternal BMI at the end of pregnancy (r=0.451, p less than 0.01). Multivariate regression analysis corrected for confounding factors, showed that maternal overweight or obesity was significantly associated with high F2-IsoPs levels in SGA offspring (p less than 0.01). Maternal overweight or obesity is associated with increased OS in their SGA newborns. Data suggest the need of antioxidant protection for both mothers during pregnancy and infants soon after birth.


Subject(s)
F2-Isoprostanes/blood , Infant, Small for Gestational Age/blood , Obesity/blood , Oxidative Stress , Adult , Birth Weight , Body Mass Index , Female , Fetal Blood/chemistry , Gestational Age , Humans , Infant , Infant, Newborn , Lipid Peroxidation , Male , Multivariate Analysis , Obesity/physiopathology , Perinatal Care , Pregnancy , Prospective Studies , Risk Factors
3.
Oxid Med Cell Longev ; 2017: 3759287, 2017.
Article in English | MEDLINE | ID: mdl-28133505

ABSTRACT

This research paper aims to investigate if oxidative stress biomarkers increase after a painful procedure in term newborns and if nonpharmacological approaches, or sex, influence pain degree, and the subsequent OS. 83 healthy term newborns were enrolled to receive 10% oral glucose or sensorial saturation (SS) for analgesia during heel prick (HP). The ABC scale was used to score the pain. Advanced oxidation protein products (AOPP) and total hydroperoxides (TH) as biomarkers of OS were measured at the beginning (early-sample) and at the end (late-sample) of HP. The early-sample/late-sample ratio for AOPP and TH was used to evaluate the increase in OS biomarkers after HP. Higher levels of both AOPP and TH ratio were observed in high degree pain (4-6) compared with low degree pain score (0-3) (AOPP: p = 0.049; TH: p = 0.001). Newborns receiving SS showed a significantly lower pain score (p = 0.000) and AOPP ratio levels (p = 0.021) than those without. Males showed higher TH levels at the end of HP (p = 0.005) compared to females. The current study demonstrates that a relationship between pain degree and OS exists in healthy full-term newborns. The amount of OS is gender related, being higher in males. SS reduces pain score together with pain-related OS in the newborns.


Subject(s)
Oxidative Stress/physiology , Pain/physiopathology , Advanced Oxidation Protein Products/blood , Female , Humans , Hydrogen Peroxide/blood , Infant, Newborn , Male
4.
J Biol Regul Homeost Agents ; 30(3): 929-934, 2016.
Article in English | MEDLINE | ID: mdl-27655523

ABSTRACT

With advancing gestation, partial pressure of oxygen (pO2) and pH fall significantly. Hypoxia is a main factor inducing free radical generation and thereby oxidative stress (OS). Placental and fetal tissue response when oxygen becomes restricted is complex and partially known. We tested the hypothesis that changes in umbilical artery and vein blood gas concentrations modulate OS occurrence in the newborn. Seventy umbilical artery and vein plasma samples were collected from healthy term newborns immediately after delivery. F2 Isoprostanes (F2-Isop) were measured in all samples as reliable markers of lipid peroxidation. Significantly lower pCO2 and higher pO2 and pH were found in umbilical vein than in artery, as expected. A positive correlation was detected between pH and pO2 only in umbilical artery (p=0.019). F2-Isop levels were no different between artery and vein in cord blood. Significant correlations were found between F2-Isop and pCO2 (p=0.025) as well as between F2-Isop and pH in umbilical vein (p=0.027). F2-Isop correlated with pCO2 (p=0.007) as well as with pO2 values (p=0.005) in umbilical artery blood. Oxidative stress (OS) in newborns depends on oxygen concentrations in umbilical artery. OS biomarkers significantly correlate with pO2 and in umbilical artery but not in umbilical vein. In normoxic conditions fetal-maternal gas exchanges occurring in placenta re-establish normal higher oxygen levels in umbilical vein than artery, with a normal production of free radicals without any deleterious effects.


Subject(s)
F2-Isoprostanes/blood , Infant, Newborn/blood , Oxidative Stress , Oxygen/blood , Umbilical Arteries , Carbon Dioxide/blood , Cesarean Section , Female , Fetal Blood/chemistry , Free Radicals , Humans , Hydrogen-Ion Concentration , Male , Oxygen Inhalation Therapy , Partial Pressure , Pregnancy , Reference Values , Umbilical Veins
5.
Oxid Med Cell Longev ; 2014: 781454, 2014.
Article in English | MEDLINE | ID: mdl-24876916

ABSTRACT

OBJECTIVES: To test the hypothesis that neonatal supplementation with lutein in the first hours of life reduces neonatal oxidative stress (OS) in the immediate postpartum period. METHODS: A randomized controlled, double-blinded clinical trial was conducted among 150 newborns divided into control group, not supplemented (n = 47), and test group, supplemented with lutein on the first day postpartum (n = 103). Blood Samples were collected at birth from cord and at 48 hrs postpartum while routine neonatal metabolic screenings were taking place. Total hydroperoxide (TH), advanced oxidation protein products (AOPP), and biological antioxidant potential (BAP) were measured by spectrophotometry and data were analyzed by Wilcoxon rank sum test and by multivariate logistic regression analysis. RESULTS: Before lutein supplementation, the mean blood concentrations of AOPP, TH, and BAP were 36.10 umol/L, 156.75 mmol/H2O2, and 2361.04 umol/L in the test group. After lutein supplementation, significantly higher BAP increment (0.17 ± 0.22 versus 0.06 versus ± 0.46) and lower TH increment (0.46 ± 0.54 versus 0.34 ± 0.52) were observed in the test group compared to controls. CONCLUSION: Neonatal supplementation with lutein in the first hours of life increases BAP and reduces TH in supplemented babies compared to those untreated. The generation of free radical-induced damage at birth is reduced by lutein. This trial is registered with ClinicalTrials.gov NCT02068807.


Subject(s)
Lutein/pharmacology , Oxidative Stress/drug effects , Advanced Oxidation Protein Products/blood , Antioxidants/analysis , Antioxidants/chemistry , Antioxidants/metabolism , Area Under Curve , Dietary Supplements , Double-Blind Method , Female , Humans , Hydrogen Peroxide/blood , Infant, Newborn , Lipid Peroxidation/drug effects , Logistic Models , Male , ROC Curve , Spectrophotometry
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