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Physical Exercise Counteracts Aging-Associated White Matter Demyelination Causing Cognitive Decline.体育锻炼可对抗与衰老相关的白质脱髓鞘,从而防止认知能力下降。
Aging Dis. 2024 Oct 1;15(5):2136-2148. doi: 10.14336/AD.2024.0216.
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From Insight to Eyesight: Unveiling the Secrets of the Insulin-Like Growth Factor Axis in Retinal Health.从洞察到视力:揭示胰岛素样生长因子轴在视网膜健康中的秘密。
Aging Dis. 2024 Oct 1;15(5):1994-2002. doi: 10.14336/AD.2024.0128.
4
Association of Plasma Markers of Alzheimer's Disease, Neurodegeneration, and Neuroinflammation with the Choroid Plexus Integrity in Aging.阿尔茨海默病、神经退行性变和神经炎症的血浆标志物与衰老脉络丛完整性的关系。
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Current Advances and Future Perspectives on Mesenchymal Stem Cell-Derived Extracellular Vesicles in Alzheimer's Disease.间充质干细胞衍生细胞外囊泡在阿尔茨海默病中的最新进展及未来展望。
Aging Dis. 2024 Oct 1;15(5):2015-2027. doi: 10.14336/AD.2023.1206.
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Polypharmacological Potential of Phosphodiesterase 5 Inhibitors for the Treatment of Neurocognitive Disorders.磷酸二酯酶 5 抑制剂治疗神经认知障碍的多药理学潜力。
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Type-2 Diabetes Alters Hippocampal Neural Oscillations and Disrupts Synchrony between the Hippocampus and Cortex.2 型糖尿病改变海马神经振荡,并破坏海马和皮层之间的同步性。
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遗传风险、炎症与治疗:衰老大脑与神经退行性变最新进展的社论概述。

Genetic Risk, Inflammation, and Therapeutics: An Editorial Overview of Recent Advances in Aging Brains and Neurodegeneration.

机构信息

Macquarie Medical School, Faculty of Medicine, Health and Human Sciences, Macquarie University, North Ryde, Sydney, NSW 2109, Australia.

School of Medicine, Deakin University, Geelong, VIC 3216, Australia.

出版信息

Aging Dis. 2024 Oct 1;15(5):1989-1993. doi: 10.14336/AD.2024.0986.

DOI:10.14336/AD.2024.0986
PMID:39191394
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC11346396/
Abstract

Neurodegenerative disorders, including Dementia, Parkinson's disease, various Vision disorders, Multiple sclerosis, and transsynaptic degenerative changes represent a significant challenge in aging populations. This editorial synthesizes and discusses recent advancements in understanding the genetic and environmental factors contributing to these diseases. Central to these advancements is the role of neuroinflammation and oxidative stress, which exacerbate neuronal damage and accelerate disease progression. Emerging research underscores the significance of mitochondrial dysfunction and protein aggregation in neurodegenerative pathology, highlighting shared mechanisms across various disorders. Innovative therapeutic strategies, including gene therapy, CRISPR-Cas technology, and the use of naturally occurring antioxidant molecules, are being investigated to target and manage these conditions. Additionally, lifestyle interventions such as exercise and healthy diet have shown promise in enhancing brain plasticity and reducing neuroinflammation. Advances in neuroimaging and biomarker discovery are necessary to improve early diagnosis, while clinical and preclinical studies are essential for the translation of these novel treatments. This edition aims to bridge the gap between molecular mechanisms and therapeutic applications, offering insights into potential interventions to mitigate the impact of neurodegenerative diseases. By establishing a deeper understanding of these complex processes, we aim to move closer to effective prevention and treatment strategies, ultimately improving the quality of life for those affected by neurodegenerative disorders.

摘要

神经退行性疾病,包括痴呆、帕金森病、各种视力障碍、多发性硬化症和突触间退行性变化,是老龄化人口面临的重大挑战。本社论综合讨论了理解导致这些疾病的遗传和环境因素的最新进展。神经炎症和氧化应激是这些进展的核心,它们加剧神经元损伤并加速疾病进展。新兴研究强调了线粒体功能障碍和蛋白质聚集在神经退行性病变中的重要性,突出了各种疾病之间的共同机制。正在研究包括基因治疗、CRISPR-Cas 技术和天然抗氧化分子的使用在内的创新治疗策略,以针对和管理这些疾病。此外,运动和健康饮食等生活方式干预已被证明可以增强大脑的可塑性并减少神经炎症。神经影像学和生物标志物发现的进展对于改善早期诊断是必要的,而临床前和临床研究对于这些新型治疗方法的转化至关重要。本版旨在弥合分子机制和治疗应用之间的差距,为减轻神经退行性疾病的影响提供潜在干预措施的见解。通过更深入地了解这些复杂过程,我们旨在更接近有效的预防和治疗策略,最终改善受神经退行性疾病影响的人的生活质量。