Icariin targets p53 to protect against ceramide-induced neuronal senescence: Implication in Alzheimer's disease

IF 7.1 2区 生物学 Q1 BIOCHEMISTRY & MOLECULAR BIOLOGY Free Radical Biology and Medicine Pub Date : 2024-08-26 DOI:10.1016/j.freeradbiomed.2024.08.031
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Abstract

Background

Alzheimer's disease (AD) is a leading cause of dementia. The aging brain is particularly vulnerable to various stressors, including increased levels of ceramide. However, the role of ceramide in neuronal cell senescence and AD progression and whether icariin, a natural flavonoid glucoside, could reverse neuronal senescence remain inadequately understood.

Aim

In this study, we explore the role of ceramide in neuronal senescence and AD, and whether icariin can counteract these effects.

Methods

We pretreated HT-22 cells with icariin and then induced senescence with ceramide. Various assays were employed to assess cell senescence, such as reactive oxygen species (ROS) production, cell cycle progression, β-galactosidase staining, and expression of senescence-associated proteins. In vivo studies utilized APP/PS1 mice and C57BL/6J mice injected with ceramide to evaluate behavioral changes, histopathological alterations, and senescence-associated protein expression. Transcriptomics, molecular docking, molecular dynamics simulations, and cellular thermal shift assays were employed to verify the interaction between icariin and P53. The specificity of icariin targeting of P53 was further confirmed through rescue experiments utilizing the P53 activator Navtemadlin.

Results

Our data demonstrated that ceramide could induce neuronal senescence and AD-related pathologies, which were reversed by icariin. Moreover, molecular studies revealed that icariin directly targeted P53, and its neuroprotective effects were attenuated by P53 activation, providing evidence for the role of P53 in icariin-mediated neuroprotection.

Conclusion

Icariin demonstrates a protective effect against ceramide-induced neuronal senescence by inhibiting the P53 pathway. This identifies a novel mechanism of action for icariin, offering a novel therapeutic approach for AD and other age-related neurodegenerative diseases.

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淫羊藿苷靶向 p53 保护神经元免受神经酰胺诱导的衰老:与阿尔茨海默病的关系
背景:阿尔茨海默病(AD)是导致痴呆症的主要原因。衰老的大脑特别容易受到各种压力的影响,包括神经酰胺水平的升高。然而,人们对神经酰胺在神经细胞衰老和阿兹海默病进展中的作用,以及一种天然黄酮葡糖苷--冰片苷能否逆转神经细胞衰老仍缺乏足够的了解:方法:我们用冰片苷预处理 HT-22 细胞,然后用神经酰胺诱导衰老。方法:我们用冰片苷预处理 HT-22 细胞,然后用神经酰胺诱导细胞衰老,并采用多种检测方法评估细胞衰老,如活性氧(ROS)产生、细胞周期进展、β-半乳糖苷酶染色和衰老相关蛋白的表达。体内研究利用注射了神经酰胺的APP/PS1小鼠和C57BL/6J小鼠来评估行为变化、组织病理学改变和衰老相关蛋白的表达。研究采用了转录组学、分子对接、分子动力学模拟和细胞热转移试验等方法来验证冰醋酸与 P53 之间的相互作用。通过利用 P53 激活剂 Navtemadlin 进行挽救实验,进一步证实了冰片苷靶向 P53 的特异性:结果:我们的数据表明,神经酰胺可诱导神经元衰老和与AD相关的病变,而冰片花素可逆转这些病变。此外,分子研究显示,冰片苷直接靶向 P53,其神经保护作用因 P53 激活而减弱,这为 P53 在冰片苷介导的神经保护中的作用提供了证据:结论:淫羊藿苷通过抑制 P53 通路对神经酰胺诱导的神经元衰老具有保护作用。结论:淫羊藿苷通过抑制 P53 通路对神经酰胺诱导的神经元衰老具有保护作用,这为淫羊藿苷提供了一种新的作用机制,为治疗注意力缺失症和其他与年龄相关的神经退行性疾病提供了一种新的治疗方法。
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来源期刊
Free Radical Biology and Medicine
Free Radical Biology and Medicine 医学-内分泌学与代谢
CiteScore
14.00
自引率
4.10%
发文量
850
审稿时长
22 days
期刊介绍: Free Radical Biology and Medicine is a leading journal in the field of redox biology, which is the study of the role of reactive oxygen species (ROS) and other oxidizing agents in biological systems. The journal serves as a premier forum for publishing innovative and groundbreaking research that explores the redox biology of health and disease, covering a wide range of topics and disciplines. Free Radical Biology and Medicine also commissions Special Issues that highlight recent advances in both basic and clinical research, with a particular emphasis on the mechanisms underlying altered metabolism and redox signaling. These Special Issues aim to provide a focused platform for the latest research in the field, fostering collaboration and knowledge exchange among researchers and clinicians.
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