Rashidi Seyed Yasin, Rafiyan Mahdi, Asemi Reza, Asemi Zatollah, Mohammadi Sotoudeh
Student Research Committee.
Research Center for Biochemistry and Nutrition in Metabolic Diseases, Institute for Basic Sciences, Kashan University of Medical Sciences, Kashan.
Ann Med Surg (Lond). 2024 Jul 5;86(9):5320-5325. doi: 10.1097/MS9.0000000000002350. eCollection 2024 Sep.
Intrauterine growth restriction (IUGR) or intrauterine growth retardation is a condition that the fetus does not grow as expected. And the biometric profile does not match with the age of fetus. This condition is associated with increased mortality and morbidity of the neonates along with increased risk of cardiovascular, lung, and central nervous system damage. Despite close monitoring of high-risk mothers and the development of new therapeutic approaches, the optimal outcome has not been achieved yet that it indicates the importance of investigations on new therapeutic approaches. Melatonin (MLT) is a neurohormone mainly produced by the pineal gland and has a wide range of effects on different organs due to the broad dispersion of its receptors. Moreover, melatonin is produced by the placenta and also its receptors have been found on the surface of this organ. Not only studies showed the importance of this neurohormone on growth and development of fetus but also they proved its highly anti-oxidant properties. As in IUGR the oxidative stress and inflammation increased melatonin could counteract these changes and improved organ's function. In this study, we found that use of MLT could be a good clinical approach for the treatment of IUGR as its high anti-oxidant activity and vasodilation could dampen the mechanisms lead to the IUGR development.
宫内生长受限(IUGR)或宫内发育迟缓是一种胎儿未按预期生长的情况。并且生物测量指标与胎儿年龄不匹配。这种情况与新生儿死亡率和发病率增加以及心血管、肺和中枢神经系统损伤风险增加相关。尽管对高危母亲进行了密切监测并开发了新的治疗方法,但尚未实现最佳结果,这表明研究新治疗方法的重要性。褪黑素(MLT)是一种主要由松果体产生的神经激素,由于其受体广泛分布,对不同器官有广泛影响。此外,褪黑素由胎盘产生,并且在该器官表面也发现了其受体。研究不仅表明这种神经激素对胎儿生长发育的重要性,还证明了其高度抗氧化特性。由于在IUGR中氧化应激和炎症增加,褪黑素可以抵消这些变化并改善器官功能。在本研究中,我们发现使用褪黑素可能是治疗IUGR的一种良好临床方法,因为其高抗氧化活性和血管舒张作用可以抑制导致IUGR发展的机制。