Nitric oxide and reactive species are modulated in the polyphenol-induced ductus arteriosus constriction in pregnant sheep
Autor: | Melissa Medeiros Markoski, Luiz Henrique Soares Nicoloso, Mariele Feiffer Charão, Sabrina Nascimento, Solange Cristina Garcia, Antônio Piccoli, Rafael Noal Moresco, Izabele Vian, Rachel Picada Bulcão, Marília Baierle, Guilherme Bubols, Natália Brucker, Paulo Zielinsky, Marcelo Meller Alievi, Angela M. Moro |
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Rok vydání: | 2014 |
Předmět: |
chemistry.chemical_classification
medicine.medical_specialty Fetus biology Glutathione peroxidase Obstetrics and Gynecology medicine.disease_cause Constriction Nitric oxide Excretion chemistry.chemical_compound medicine.anatomical_structure Endocrinology chemistry Catalase Internal medicine Ductus arteriosus medicine biology.protein Genetics (clinical) Oxidative stress |
Zdroj: | Prenatal Diagnosis. 34:1268-1276 |
ISSN: | 0197-3851 |
DOI: | 10.1002/pd.4463 |
Popis: | Objective Because we have previously demonstrated the relation between polyphenol-rich foods (PRF) consumption and ductus arteriosus constriction, in this work, pregnant sheep were submitted to oral PRF intake for 14days to understand how this process occurs. Fetal Doppler echocardiography, oxidative and inflammatory biomarkers and total polyphenol excretion were evaluated. Results The high polyphenol intake induced ductus arteriosus constriction by 71.6% increase in systolic (P=0.001) and 57.8% in diastolic velocities (P=0.002), and 18.9% decrease in pulsatility index (P=0.033), along with 1.7-fold increase in total polyphenol excretion, 2.3-fold decrease in inflammatory mediator nitric oxide and following redox status changes (mean±standard deviation): higher protein carbonyls (1.09±0.09 and 1.49±0.31), catalase (0.69±0.39 and 1.44±0.33) and glutathione peroxidase (37.23±11.19 and 62.96±15.03) in addition to lower lipid damage (17.22±2.05 and 12.53±2.11) and nonprotein thiols (0.11±0.04 and 0.04±0.01) found before and after treatment, respectively. Ductal parameters correlated to NOx, catalase, glutathione peroxidase and protein carbonyl. Conclusion Our results highlight the need to reduce maternal PRF intake in late pregnancy to prevent fetal duct constriction through NO-mediated vasoconstrictive action of polyphenols. © 2014 John Wiley & Sons, Ltd. |
Databáze: | OpenAIRE |
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