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A Narrative Review on the Pathophysiology of Preeclampsia

胎盘形成 内皮功能障碍 子痫前期 氧化应激 表观遗传学 炎症 胎盘生长因子 生物 血管生成 生物信息学 螺旋动脉 医学 免疫学 癌症研究 胎盘 内分泌学 怀孕 遗传学 胎儿 基因
作者
Johnatan Torres‐Torres,Salvador Espino y Sosa,R.J. Martinez‐Portilla,Héctor Borboa-Olivares,Guadalupe Estrada‐Gutiérrez,Sandra Acevedo‐Gallegos,Erika Ruiz-Ramirez,Martha Velasco-Espin,Pablo Cerda-Flores,Andrea Ramirez-Gonzalez,Lourdes Rojas-Zepeda
出处
期刊:International Journal of Molecular Sciences [Multidisciplinary Digital Publishing Institute]
卷期号:25 (14): 7569-7569 被引量:40
标识
DOI:10.3390/ijms25147569
摘要

Preeclampsia (PE) is a multifactorial pregnancy disorder characterized by hypertension and proteinuria, posing significant risks to both maternal and fetal health. Despite extensive research, its complex pathophysiology remains incompletely understood. This narrative review aims to elucidate the intricate mechanisms contributing to PE, focusing on abnormal placentation, maternal systemic response, oxidative stress, inflammation, and genetic and epigenetic factors. This review synthesizes findings from recent studies, clinical trials, and meta-analyses, highlighting key molecular and cellular pathways involved in PE. The review integrates data on oxidative stress biomarkers, angiogenic factors, immune interactions, and mitochondrial dysfunction. PE is initiated by poor placentation due to inadequate trophoblast invasion and improper spiral artery remodeling, leading to placental hypoxia. This triggers the release of anti-angiogenic factors such as soluble fms-like tyrosine kinase-1 (sFlt-1) and soluble endoglin (sEng), causing widespread endothelial dysfunction and systemic inflammation. Oxidative stress, mitochondrial abnormalities, and immune dysregulation further exacerbate the condition. Genetic and epigenetic modifications, including polymorphisms in the Fms-like tyrosine kinase 1 (FLT1) gene and altered microRNA (miRNA) expression, play critical roles. Emerging therapeutic strategies targeting oxidative stress, inflammation, angiogenesis, and specific molecular pathways like the heme oxygenase-1/carbon monoxide (HO-1/CO) and cystathionine gamma-lyase/hydrogen sulfide (CSE/H2S) pathways show promise in mitigating preeclampsia's effects. PE is a complex disorder with multifactorial origins involving abnormal placentation, endothelial dysfunction, systemic inflammation, and oxidative stress. Despite advances in understanding its pathophysiology, effective prevention and treatment strategies remain limited. Continued research is essential to develop targeted therapies that can improve outcomes for both mothers and their babies.
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