性腺激素和水通道蛋白-4:glymatic调节和淀粉样蛋白清除的临床前见解。

IF 3.1 3区 医学 Q2 NEUROSCIENCES
Muhammed Zahid Sahin, Abdulkadir Yildirim
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引用次数: 0

摘要

水通道蛋白-4 (AQP4)在星形细胞端足介导的水运输对于淋巴清除至关重要,这一过程越来越被认为是大脑健康和神经退行性恢复的决定因素。然而,现有的文献尚未系统地阐明性激素如何影响AQP4生物学,进而影响淋巴效率,这使得我们对阿尔茨海默病等疾病的性别特异性易感性的理解存在重大空白。为了解决这一差距,我们利用临床前模型的证据,研究了性激素在神经炎症过程中如何影响AQP4的表达和极性。我们对缺血性卒中、外伤性脑损伤、缺氧缺血、渗透应激和病毒性神经炎症模型的体内和体外研究进行了全面回顾,提取了激素状态、AQP4指标、神经炎症标志物和液体清除结果的标准化数据。整理的结果显示,雌激素、孕激素或睾酮的缺失会放大小胶质细胞增生、NF-κB活化、细胞因子释放(IFN-γ、IL-6、IL-8)和AQP4错误定位,而生理性激素替代会逆转这些变化,恢复AQP4极性,并稳定血脑屏障。这些结果表明,AQP4和淋巴流动的性别依赖性调节可能是绝经后妇女阿尔茨海默病发病率更高和进展更快的原因。我们的合成强调了实时淋巴显像结合靶向激素或抗炎干预的必要性,以确定重建适当的激素信号或AQP4极性是否可以减缓蛋白酶积累并改变疾病轨迹。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Gonadal hormones and aquaporin-4: Preclinical insights into glymphatic regulation and amyloid clearance.

Aquaporin-4 (AQP4)-mediated water transport at astrocytic end-feet is pivotal for glymphatic clearance, a process increasingly recognized as a determinant of brain health and resilience to neurodegeneration. Nevertheless, existing literature has not yet systematically clarified how sex hormones influence AQP4 biology and, in turn, glymphatic efficiency, leaving a critical gap in our understanding of sex-specific vulnerability to disorders such as Alzheimer's disease. To address this gap, we investigated how gonadal hormones influence AQP4 expression and polarity within the context of neuroinflammatory processes, drawing on evidence from preclinical models. We conducted a comprehensive review of in vivo and in vitro studies across ischemic stroke, traumatic brain injury, hypoxia-ischemia, osmotic stress, and viral neuroinflammation models, extracting standardized data on hormonal status, AQP4 metrics, neuroinflammatory markers, and fluid-clearance outcomes. The collated findings reveal that loss of estrogen, progesterone, or testosterone amplifies microgliosis, NF-κB activation, cytokine release (IFN-γ, IL-6, IL-8), and AQP4 mislocalization, whereas physiological hormone replacement reverses these changes, restores AQP4 polarity, and stabilizes the blood-brain barrier. These results indicate that sex-dependent regulation of AQP4 and glymphatic flow is a plausible contributor to the higher incidence and faster progression of Alzheimer's disease in postmenopausal women. Our synthesis underscores the need for real-time glymphatic imaging combined with targeted hormonal or anti-inflammatory interventions to determine whether re-establishing proper hormone signaling or AQP4 polarity can slow proteopathic accumulation and modify disease trajectories.

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来源期刊
Journal of Alzheimer's Disease
Journal of Alzheimer's Disease 医学-神经科学
CiteScore
6.40
自引率
7.50%
发文量
1327
审稿时长
2 months
期刊介绍: The Journal of Alzheimer''s Disease (JAD) is an international multidisciplinary journal to facilitate progress in understanding the etiology, pathogenesis, epidemiology, genetics, behavior, treatment and psychology of Alzheimer''s disease. The journal publishes research reports, reviews, short communications, hypotheses, ethics reviews, book reviews, and letters-to-the-editor. The journal is dedicated to providing an open forum for original research that will expedite our fundamental understanding of Alzheimer''s disease.
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