4.7 Article

Influence of Oxidative Stress Generated by Smoking during Pregnancy on Glutathione Status in Mother-Newborn Pairs

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ANTIOXIDANTS
卷 10, 期 12, 页码 -

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MDPI
DOI: 10.3390/antiox10121866

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smoking in pregnancy; cord blood; glutathione; glutathione peroxidase; glutathione reductase; total oxidant capacity

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This study found that smoking increases oxidative stress levels and reduces the balance of glutathione in both mothers and newborns. Lower levels of reductase were observed in smoking groups, while GPx-3 levels were decreased in newborns exposed to tobacco smoke in utero. This suggests that oxidative stress from tobacco smoke can negatively impact glutathione homeostasis and antioxidant balance in newborns.
Glutathione plays a key role in maintaining a physiological balance between prooxidants and antioxidants in the human body. Therefore, we examined the influence of maternal smoking as a source of oxidative stress measured by total oxidant capacity (TOC) on reduced glutathione (GSH), oxidized glutathione (GSSG), glutathione peroxidase (GPx-3), and reductase (GR) amount in maternal and umbilical cord blood in 110 (45 smoking and 65 non-smoking) mother-newborn pairs. Concentrations of glutathione status markers and TOC were evaluated by competitive inhibition enzyme immunoassay technique. Plasma TOC levels were significantly higher and the GSH/GSSG ratio, which is considered an index of the cell's redox status, were significantly lower in smoking women and their offspring than in non-smoking pairs. Decreased GR levels were found in smoking mothers and their newborns compared with similar non-smoking groups. Although plasma GPx-3 concentrations were similar in both maternal groups, in the cord blood of newborns exposed to tobacco smoke in utero they were reduced compared with the levels observed in children of tobacco abstinent mothers. Oxidative stress generated by tobacco smoke impairs glutathione homeostasis in both the mother and the newborn. The severity of oxidative processes in the mother co-existing with the reduced potential of antioxidant systems may have a negative effect on the oxidative-antioxidant balance in the newborn.

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