揭示ros -炎症-免疫平衡:衰老与疾病的新视角。

IF 7 2区 医学 Q1 GERIATRICS & GERONTOLOGY Aging and Disease Pub Date : 2025-01-04 DOI:10.14336/AD.2024.1253
Sihang Fang, Mingjun Jiang, Juan Jiao, Hongye Zhao, Dizhi Liu, Danni Gao, Tenger Wang, Ze Yang, Huiping Yuan
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引用次数: 0

摘要

熵的增加是疾病和衰老的常见原因。寿命熵是指一个人一生中所造成的疾病的总体增加。衰老会导致活性氧(ROS)的过量产生,从而破坏抗氧化系统并破坏氧化还原平衡。器官老化导致慢性炎症,破坏促炎因子和抗炎因子的平衡。炎症是一种慢性低度炎症状态,由氧化应激激活,可导致免疫系统衰老。在这个过程中,当身体从低有序状态过渡到高无序状态时,熵显著增加。然而,炎症、衰老和免疫系统活动之间的联系仍未被完全理解。本文首次介绍了ros -炎症-免疫平衡的概念,并认为这种平衡可能与衰老和年龄相关疾病的发生有关。我们还探讨了这三个因素的平衡如何控制和影响与年龄有关的疾病。此外,上述关系中的不平衡破坏了细胞的规则结构并改变了它们的功能,导致细胞损伤和以熵增加为标志的无组织状态的出现。保持低熵状态是防止和逆转老化过程的关键。因此,我们检查了目前针对这种平衡的抗衰老药物的临床前证据。最终,理解这三个因素与生物体中年龄相关疾病风险之间的复杂关系将有助于开发促进长期健康的临床干预措施。
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Unraveling the ROS-Inflammation-Immune Balance: A New Perspective on Aging and Disease.

Increased entropy is a common cause of disease and aging. Lifespan entropy is the overall increase in disorder caused by a person over their lifetime. Aging leads to the excessive production of reactive oxygen species (ROS), which damage the antioxidant system and disrupt redox balance. Organ aging causes chronic inflammation, disrupting the balance of proinflammatory and anti-inflammatory factors. Inflammaging, which is a chronic low-grade inflammatory state, is activated by oxidative stress and can lead to immune system senescence. During this process, entropy increases significantly as the body transitions from a state of low order to high disorder. However, the connection among inflammation, aging, and immune system activity is still not fully understood. This review introduces the idea of the ROS-inflammation-immune balance for the first time and suggests that this balance may be connected to aging and the development of age-related diseases. We also explored how the balance of these three factors controls and affects age-related diseases. Moreover, imbalance in the relationship described above disrupts the regular structures of cells and alters their functions, leading to cellular damage and the emergence of a disorganized state marked by increased entropy. Maintaining a low entropy state is crucial for preventing and reversing aging processes. Consequently, we examined the current preclinical evidence for antiaging medications that target this balance. Ultimately, comprehending the intricate relationships between these three factors and the risk of age-related diseases in organisms will aid in the development of clinical interventions that promote long-term health.

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来源期刊
Aging and Disease
Aging and Disease GERIATRICS & GERONTOLOGY-
CiteScore
14.60
自引率
2.70%
发文量
138
审稿时长
10 weeks
期刊介绍: Aging & Disease (A&D) is an open-access online journal dedicated to publishing groundbreaking research on the biology of aging, the pathophysiology of age-related diseases, and innovative therapies for conditions affecting the elderly. The scope encompasses various diseases such as Stroke, Alzheimer's disease, Parkinson’s disease, Epilepsy, Dementia, Depression, Cardiovascular Disease, Cancer, Arthritis, Cataract, Osteoporosis, Diabetes, and Hypertension. The journal welcomes studies involving animal models as well as human tissues or cells.
期刊最新文献
Deformability of Heterogeneous Red Blood Cells in Aging and Related Pathologies. NR1D1 Inhibition Enhances Autophagy and Mitophagy in Alzheimer's Disease Models. Chronic Cerebral Deterioration - A Comprehensive View of Old-Age Cerebral Deterioration. Physical Prehabilitation for Older Patients with Cancer before Complex Medical-Surgical Interventions: An Umbrella Review. Pros and Cons of Human Brain Organoids to Study Alzheimer's Disease.
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