Tain You-Lin, Hsu Chien-Ning
Division of Pediatric Nephrology, Kaohsiung Chang Gung Memorial Hospital, Kaohsiung 833, Taiwan.
College of Medicine, Chang Gung University, Taoyuan 333, Taiwan.
Metabolites. 2023 Mar 12;13(3):418. doi: 10.3390/metabo13030418.
Hypertension can have its origin in early life. During pregnancy, many metabolic alterations occur in the mother that have a crucial role in fetal development. In response to maternal insults, fetal programming may occur after metabolic disturbance, resulting in programmed hypertension later in life. Maternal dietary nutrients act as metabolic substrates for various metabolic processes via nutrient-sensing signals. Different nutrient-sensing pathways that detect levels of sugars, amino acids, lipids and energy are integrated during pregnancy, while disturbed nutrient-sensing signals have a role in the developmental programming of hypertension. Metabolism-modulated metabolites and nutrient-sensing signals are promising targets for new drug discovery due to their pathogenic link to hypertension programming. Hence, in this review, we pay particular attention to the maternal nutritional insults and metabolic wastes affecting fetal programming. We then discuss the role of nutrient-sensing signals linking the disturbed metabolism to hypertension programming. This review also summarizes current evidence to give directions for future studies regarding how to prevent hypertension via reprogramming strategies, such as nutritional intervention, targeting nutrient-sensing signals, and reduction of metabolic wastes. Better prevention for hypertension may be possible with the help of novel early-life interventions that target altered metabolism.
高血压可能起源于生命早期。在孕期,母亲会发生许多代谢改变,这些改变对胎儿发育至关重要。作为对母体损伤的反应,胎儿编程可能在代谢紊乱后发生,导致日后出现程序性高血压。母体饮食营养素通过营养感应信号充当各种代谢过程的代谢底物。在孕期,检测糖、氨基酸、脂质和能量水平的不同营养感应途径相互整合,而紊乱的营养感应信号在高血压的发育编程中起作用。由于代谢调节的代谢物和营养感应信号与高血压编程存在致病联系,它们是新药研发的有前景的靶点。因此,在本综述中,我们特别关注影响胎儿编程的母体营养损伤和代谢废物。然后我们讨论营养感应信号在将紊乱的代谢与高血压编程联系起来方面的作用。本综述还总结了当前证据,为未来关于如何通过重编程策略预防高血压的研究提供方向,如营养干预、靶向营养感应信号和减少代谢废物。借助针对代谢改变的新型生命早期干预措施,可能更好地预防高血压。