Wang Xiang-Ping, Yan Dan, Jin Xia-Ping, Zhang Wen-Yan, Shi Tao, Wang Xiang, Song Wenjuan, Xiong Xing, Guo Duancheng, Chen Sheng
First People's Hospital of Linping District; Linping Campus, The Second Affiliated Hospital of Zhejiang University School of Medicine, Hangzhou, 311100, China.
Affiliated Xiaoshan Hospital, Hangzhou Normal University, Hangzhou 311202, China.
Pharmacol Res. 2024 Sep;207:107313. doi: 10.1016/j.phrs.2024.107313. Epub 2024 Jul 17.
Acute ischemic stroke (AIS) is the most prevalent type of stroke, and due to its high incidence, disability rate, and mortality rate, it imposes a significant burden on the health care system. Amino acids constitute one of the most crucial metabolic products within the human body, and alterations in their metabolic pathways have been identified in the microenvironment of AIS, thereby influencing the pathogenesis, severity, and prognosis of AIS. The amino acid metabolism characteristics in AIS are complex. On one hand, the dynamic progression of AIS continuously reshapes the amino acid metabolism pattern. Conversely, changes in the amino acid metabolism pattern also exert a double-edged effect on AIS. This interaction is bidirectional, dynamic, heterogeneous, and dose-specific. Therefore, the distinctive metabolic reprogramming features surrounding amino acids during the AIS process are systematically summarized in this paper, aiming to provide potential investigative strategies for the early diagnosis, treatment approaches, and prognostic enhancement of AIS.
急性缺血性卒中(AIS)是最常见的卒中类型,由于其高发病率、致残率和死亡率,给医疗保健系统带来了沉重负担。氨基酸是人体中最关键的代谢产物之一,在AIS的微环境中已发现其代谢途径发生改变,从而影响AIS的发病机制、严重程度和预后。AIS中的氨基酸代谢特征复杂。一方面,AIS的动态进展不断重塑氨基酸代谢模式。相反,氨基酸代谢模式的变化也对AIS产生双刃剑效应。这种相互作用是双向的、动态的、异质性的且具有剂量特异性。因此,本文系统总结了AIS过程中围绕氨基酸的独特代谢重编程特征,旨在为AIS的早期诊断、治疗方法和预后改善提供潜在的研究策略。