MAPK, PI3K/Akt Pathways, and GSK-3β Activity in Severe Acute Heart Failure in Intensive Care Patients: An Updated Review.

IF 2.4 4区 医学 Q2 CARDIAC & CARDIOVASCULAR SYSTEMS
Massimo Meco, Enrico Giustiniano, Fulvio Nisi, Pierluigi Zulli, Emiliano Agosteo
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引用次数: 0

Abstract

Acute heart failure (AHF) is a clinical syndrome characterized by the sudden onset or rapid worsening of heart failure signs and symptoms, frequently triggered by myocardial ischemia, pressure overload, or cardiotoxic injury. A central component of its pathophysiology is the activation of intracellular signal transduction cascades that translate extracellular stress into cellular responses. Among these, the mitogen-activated protein kinase (MAPK) pathways have received considerable attention due to their roles in mediating inflammation, apoptosis, hypertrophy, and adverse cardiac remodeling. The canonical MAPK cascades-including extracellular signal-regulated kinases (ERK1/2), p38 MAPK, and c-Jun N-terminal kinases (JNK)-are activated by upstream stimuli such as angiotensin II (Ang II), aldosterone, endothelin-1 (ET-1), and sustained catecholamine release. Additionally, emerging evidence highlights the role of receptor-mediated signaling, cellular stress, and myeloid cell-driven coagulation events in linking MAPK activation to fibrotic remodeling following myocardial infarction. The phosphatidylinositol 3-kinase (PI3K)/Akt signaling cascade plays a central role in regulating cardiomyocyte survival, hypertrophy, energy metabolism, and inflammation. Activation of the PI3K/Akt pathway has been shown to confer cardioprotective effects by enhancing anti-apoptotic and pro-survival signaling; however, aberrant or sustained activation may contribute to maladaptive remodeling and progressive cardiac dysfunction. In the context of AHF, understanding the dual role of this pathway is crucial, as it functions both as a marker of compensatory adaptation and as a potential therapeutic target. Recent reviews and preclinical studies have linked PI3K/Akt activation with reduced myocardial apoptosis and attenuation of pro-inflammatory cascades that exacerbate heart failure. Among the multiple signaling pathways involved, glycogen synthase kinase-3β (GSK-3β) has emerged as a key regulator of apoptosis, inflammation, metabolic homeostasis, and cardiac remodeling. Recent studies underscore its dual function as both a negative regulator of pathological hypertrophy and a modulator of cell survival, making it a compelling therapeutic candidate in acute cardiac settings. While earlier investigations focused primarily on chronic heart failure and long-term remodeling, growing evidence now supports a critical role for GSK-3β dysregulation in acute myocardial stress and injury. This comprehensive review discusses recent advances in our understanding of the MAPK signaling pathway, the PI3K/Akt cascade, and GSK-3β activity in AHF, with a particular emphasis on mechanistic insights, preclinical models, and emerging therapeutic targets.

MAPK、PI3K/Akt通路和GSK-3β活性在重症患者急性心力衰竭中的作用:最新综述
急性心力衰竭(Acute heart failure, AHF)是一种以心衰体征和症状突然发作或迅速恶化为特征的临床综合征,常由心肌缺血、压力过载或心脏毒性损伤引起。其病理生理学的一个核心组成部分是细胞内信号转导级联的激活,将细胞外应激转化为细胞反应。其中,丝裂原活化蛋白激酶(MAPK)通路因其介导炎症、细胞凋亡、肥厚和不良心脏重构的作用而受到广泛关注。典型的MAPK级联——包括细胞外信号调节激酶(ERK1/2)、p38 MAPK和c-Jun n端激酶(JNK)——被上游刺激如血管紧张素II (Ang II)、醛固酮、内皮素-1 (ET-1)和持续的儿茶酚胺释放激活。此外,新出现的证据强调了受体介导的信号传导、细胞应激和髓细胞驱动的凝血事件在MAPK激活与心肌梗死后纤维化重塑之间的作用。磷脂酰肌醇3-激酶(PI3K)/Akt信号级联在调节心肌细胞存活、肥厚、能量代谢和炎症中起核心作用。PI3K/Akt通路的激活已被证明可通过增强抗凋亡和促存活信号传导来赋予心脏保护作用;然而,异常或持续的激活可能导致不适应重构和进行性心功能障碍。在AHF的背景下,理解这一途径的双重作用是至关重要的,因为它既是代偿适应的标志,也是潜在的治疗靶点。最近的综述和临床前研究表明,PI3K/Akt活化与心肌凋亡减少和促炎级联的衰减有关,而促炎级联会加剧心力衰竭。在涉及的多种信号通路中,糖原合成酶激酶-3β (GSK-3β)已成为细胞凋亡、炎症、代谢稳态和心脏重塑的关键调节因子。最近的研究强调了其作为病理性肥大的负调节因子和细胞存活调节剂的双重功能,使其成为急性心脏设置的引人注目的治疗候选者。虽然早期的研究主要集中在慢性心力衰竭和长期重构,但越来越多的证据支持GSK-3β失调在急性心肌应激和损伤中的关键作用。这篇综合综述讨论了我们对AHF中MAPK信号通路、PI3K/Akt级联和GSK-3β活性的理解的最新进展,特别强调了机制见解、临床前模型和新出现的治疗靶点。
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来源期刊
Journal of Cardiovascular Development and Disease
Journal of Cardiovascular Development and Disease CARDIAC & CARDIOVASCULAR SYSTEMS-
CiteScore
2.60
自引率
12.50%
发文量
381
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