Department of Pediatrics, St. Marianna University School of Medicine, Kawasaki 216-8511, Kanagawa, Japan.
Department of Pharmacology, St. Marianna University School of Medicine, Kawasaki 216-8511, Kanagawa, Japan.
Int J Mol Sci. 2022 Sep 5;23(17):10186. doi: 10.3390/ijms231710186.
Although the rate of preterm birth has increased in recent decades, a number of preterm infants have escaped death due to improvements in perinatal and neonatal care. Antenatal glucocorticoid (GC) therapy has significantly contributed to progression in lung maturation; however, its potential effects on other organs remain controversial. Furthermore, the effects of antenatal GC therapy on the fetal heart show both pros and cons. Translational research in animal models indicates that constant fetal exposure to antenatal GC administration is sufficient for lung maturation. We have established a premature fetal rat model to investigate immature cardiopulmonary functions in the lungs and heart, including the effects of antenatal GC administration. In this review, we explain the mechanisms of antenatal GC actions on the heart in the fetus compared to those in the neonate. Antenatal GCs may contribute to premature heart maturation by accelerating cardiomyocyte proliferation, angiogenesis, energy production, and sarcoplasmic reticulum function. Additionally, this review specifically focuses on fetal heart growth with antenatal GC administration in experimental animal models. Moreover, knowledge regarding antenatal GC administration in experimental animal models can be coupled with that from developmental biology, with the potential for the generation of functional cells and tissues that could be used for regenerative medical purposes in the future.
尽管近年来早产率有所上升,但由于围产期和新生儿护理的改善,许多早产儿得以存活。产前糖皮质激素(GC)治疗显著促进了肺成熟的进展;然而,其对其他器官的潜在影响仍存在争议。此外,产前 GC 治疗对胎儿心脏的影响既有好处也有坏处。动物模型的转化研究表明,胎儿持续暴露于产前 GC 给药足以促进肺成熟。我们建立了一个早产胎儿大鼠模型,以研究肺和心脏中未成熟的心肺功能,包括产前 GC 给药的影响。在这篇综述中,我们解释了与新生儿相比,产前 GC 对胎儿心脏的作用机制。产前 GCs 可能通过加速心肌细胞增殖、血管生成、能量产生和肌浆网功能来促进早产儿心脏成熟。此外,本综述特别关注了实验动物模型中产前 GC 给药对胎儿心脏生长的影响。此外,实验动物模型中产前 GC 给药的知识可以与发育生物学相结合,为未来再生医学目的生成功能性细胞和组织提供可能。