肝性脑病小鼠模型中肝脏分泌的脂钙素-2通过akt依赖性信号调节神经元细胞功能

Danbi Jo, Yoon Seok Jung, Juhyun Song
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摘要

肝性脑病(HE)与肝功能衰竭相关,伴有高氨血症、严重炎症、抑郁、焦虑、记忆缺陷以及肝损伤。最近的研究集中在肝-脑炎症轴上,以确定HE患者的治疗方案。脂钙素-2是一种炎症相关的糖蛋白,由多种器官分泌,参与细胞机制,包括铁稳态、葡萄糖代谢、细胞死亡、神经突生长和神经发生。在这项研究中,我们研究了脂钙素-2在HE小鼠大脑皮层和神经2a (N2A)细胞中的作用。我们在HE胆管结扎小鼠模型中检测到血浆和肝脏中脂钙素-2水平升高。我们通过akt介导的信号传导证实了HE和N2A细胞小鼠脑皮层中白细胞介素-1β、环氧化酶2表达和铁代谢等细胞因子表达的变化与基因表达相关。我们的数据显示肝脂钙素-2对N2A细胞的细胞存活、铁稳态和神经突生长有负面影响。因此,我们认为,在HE患者中,调节脂钙素-2可能是缓解肝-脑轴神经病理问题的关键治疗方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Lipocalin-2 Secreted by the Liver Regulates Neuronal Cell Function Through AKT-Dependent Signaling in Hepatic Encephalopathy Mouse Model.

Lipocalin-2 Secreted by the Liver Regulates Neuronal Cell Function Through AKT-Dependent Signaling in Hepatic Encephalopathy Mouse Model.

Lipocalin-2 Secreted by the Liver Regulates Neuronal Cell Function Through AKT-Dependent Signaling in Hepatic Encephalopathy Mouse Model.

Lipocalin-2 Secreted by the Liver Regulates Neuronal Cell Function Through AKT-Dependent Signaling in Hepatic Encephalopathy Mouse Model.

Hepatic encephalopathy (HE) associated with liver failure is accompanied by hyperammonemia, severe inflammation, depression, anxiety, and memory deficits as well as liver injury. Recent studies have focused on the liver-brain-inflammation axis to identify a therapeutic solution for patients with HE. Lipocalin-2 is an inflammation-related glycoprotein that is secreted by various organs and is involved in cellular mechanisms including iron homeostasis, glucose metabolism, cell death, neurite outgrowth, and neurogenesis. In this study, we investigated that the roles of lipocalin-2 both in the brain cortex of mice with HE and in Neuro-2a (N2A) cells. We detected elevated levels of lipocalin-2 both in the plasma and liver in a bile duct ligation mouse model of HE. We confirmed changes in cytokine expression, such as interleukin-1β, cyclooxygenase 2 expression, and iron metabolism related to gene expression through AKT-mediated signaling both in the brain cortex of mice with HE and N2A cells. Our data showed negative effects of hepatic lipocalin-2 on cell survival, iron homeostasis, and neurite outgrowth in N2A cells. Thus, we suggest that regulation of lipocalin-2 in the brain in HE may be a critical therapeutic approach to alleviate neuropathological problems focused on the liver-brain axis.

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