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January 27, 2026Antioxidants2 citationsOpen Access

Prenatal Melatonin Modulates Cardiovascular Function and Oxidative Stress in Guinea Pig Neonates Under Normoxic and Hypoxic Gestation

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APAdolfo A. PazTJTamara JiménezPHPedro Herrera

Key Points

  • This research aims to evaluate the effects of prenatal melatonin on cardiovascular health in guinea pig neonates exposed to gestational hypoxia.
  • Pregnant guinea pigs were exposed to normoxia or hypoxia during pregnancy.
  • Melatonin was administered at a dose of 1 mg/kg/day.
  • Echocardiography, vascular reactivity tests, and molecular assays assessed cardiovascular structure and function.
  • The study measured changes in oxidative stress markers and antioxidant enzyme activity.
  • Gestational hypoxia led to reduced neonatal birth weight and changes in left ventricular development.
  • Melatonin treatment reversed the effects of hypoxia, restoring endothelial-dependent vasodilation and reducing oxidative stress.
  • Catalase enzyme activity was elevated in melatonin-treated hypoxic neonates.
  • Under normoxic conditions, melatonin increased left ventricular length but decreased myocardial nuclei density.

Abstract

Introduction: Gestational hypoxia (GH) increases the risk of cardiovascular diseases by inducing oxidative stress and vascular dysfunction. This study investigates whether prenatal melatonin can mitigate these effects in guinea pigs. Methods: Pregnant guinea pigs were exposed to normoxia or hypoxia and treated with melatonin (1 mg/kg/day). Echocardiography, vascular reactivity, and molecular assays were used to assess cardiovascular structure, function, and redox balance in neonates. Results: GH reduced neonatal birth weight and altered left ventricular (LV) development, resulting in increased LV systolic function and aortic blood flow velocity. Melatonin treatment reversed these effects, restoring endothelial-dependent vasodilation and decreasing oxidative stress in the LV and thoracic aorta. Catalase antioxidant enzyme activity was elevated in melatonin-treated hypoxic neonates. Unexpectedly, melatonin treatment altered cardiac structure in normoxic pregnancies, increasing LV length and decreasing LV myocardial nuclei density. Conclusions: Prenatal melatonin partially modulates GH-induced endothelial dysfunction and oxidative stress, offering potential therapeutic value. However, its effects under normoxic conditions deserve caution, emphasizing the need for targeted use only in pregnancies with evident hypoxic and oxidative stress conditions.

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Cite This Study

Paz et al. (2026) studied this question.

synapsesocial.com/papers/697854bcccb046adae516fa2https://doi.org/10.3390/antiox15020162
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