PM2.5:肺生理和肺癌发病过程中的表观遗传变化
Tamanna Parida1, Gopamma Daka1, Deepthi Murapala1
1Department of Environmental Science, GITAM School of Science, GITAM (Deemed to be University), Visakhapatnam-530045, Andhra Pradesh, India.
Critical reviews in oncogenesis
|December 5, 2023
概括
颗粒物 (PM),特别是PM2.5,显著损害呼吸系统健康,增加肺癌死亡率. 暴露于PM2.5会导致表观遗传变化,导致瘤发育和癌症风险增加.
科学领域:
- 环境健康 环境健康
- 毒理学 毒理学 毒理学
- 在瘤学瘤学.
背景情况:
- 颗粒物 (PM) 对人类呼吸系统和心血管系统构成重大风险.
- PM2.5是导致肺癌和心血管疾病的主要原因之一.
- 颗粒物的来源包括工业排放,汽车排放,采矿和吸烟.
研究的目的:
- 调查颗粒物 (PM) 对健康的影响,重点关注PM2.5.5.
- 了解PM2.5暴露与肺癌死亡率之间的联系.
- 探索PM2.5对瘤产生有所贡献的表观遗传机制.
主要方法:
- 审查有关PM组成和来源的现有文献.
- 对PM2.5暴露和肺癌死亡率的流行病学数据的分析.
- 检查详细介绍PM2.5表观遗传效应的分子研究 (miRNA,基因素修饰,DNA甲基化).
主要成果:
- 长时间暴露于PM2.5与肺癌患者的死亡率增加有关.
- 暴露于PM2.5是罹患肺癌的重要危险因素.
- PM2.5诱导表观遗传变化,包括miRNA的变化,基因质修饰和DNA甲基化,促进癌症的发展.
结论:
- 颗粒物,特别是PM2.5,对人类健康产生有害和长期的影响.
- PM2.5是肺癌发展和死亡率的一个关键因素.
- 由PM2.5引起的表观遗传修饰是驱动肺癌的关键机制.
更多相关视频
相关概念视频
Chronic Obstructive Pulmonary Disease-II: Pathophysiology
2.8K
Chronic Obstructive Pulmonary Disease (COPD) pathophysiology is intricate and multifaceted, involving a complex interplay of physiological processes. Understanding these mechanisms is crucial for effectively managing and treating COPD. Here is an in-depth look at the critical elements in the pathophysiology of COPD:
Chronic Inflammation
Chronic Inflammation
2.8K
COPD: Pathogenesis and Clinical Features
292
Chronic obstructive pulmonary disease (COPD) is a group of lung conditions that progressively worsen over time, including chronic bronchitis and emphysema. This cluster of diseases collectively leads to a gradual and irreversible decline in lung function over time.
The primary cause for the onset of COPD is cigarette smoking and exposure to air pollution. These hazardous factors initiate a chain reaction within the lungs, resulting in chronic inflammation, damage to the airways, and a...
The primary cause for the onset of COPD is cigarette smoking and exposure to air pollution. These hazardous factors initiate a chain reaction within the lungs, resulting in chronic inflammation, damage to the airways, and a...
292
Epigenetic Regulation
3.0K
Epigenetic changes alter the physical structure of the DNA without changing the genetic sequence and often regulate whether genes are turned on or off. This regulation ensures that each cell produces only proteins necessary for its function. For example, proteins that promote bone growth are not produced in muscle cells. Epigenetic mechanisms play an essential role in healthy development. Conversely, precisely regulated epigenetic mechanisms are disrupted in diseases like cancer.
X-chromosome...
X-chromosome...
3.0K
Chronic Obstructive Pulmonary Disease-I: Introduction
2.8K
Chronic Obstructive Pulmonary Disease (COPD) is a long-lasting respiratory condition requiring continuous attention and care. It is a progressive lung disease that leads to breathing challenges due to airflow obstruction. It manifests as persistent respiratory symptoms and restricted airflow resulting from abnormalities in the airways and alveoli, usually due to long-term exposure to harmful particles or gases. COPD mainly consists of two primary conditions: emphysema and chronic bronchitis.
2.8K
Asthma: Pathogenesis and Management
411
Asthma is a chronic pulmonary condition involving inflammation of the airways, hyper-reactivity, and reversible obstruction of the airways. This condition can significantly impact a person's quality of life, making breathing difficult and leading to distressing symptoms.
Asthma is classified as allergic and non-allergic. Allergens such as dust mites, pollen, and pet dander trigger allergic asthma, while factors like cold air, intense emotions, or exercise can induce non-allergic asthma.
Asthma is classified as allergic and non-allergic. Allergens such as dust mites, pollen, and pet dander trigger allergic asthma, while factors like cold air, intense emotions, or exercise can induce non-allergic asthma.
411
Asthma-II: Pathophysiology and Classification
2.7K
Asthma is a prevalent chronic respiratory condition marked by inflammation and hyperresponsiveness of the airways. Its pathophysiology involves complex interactions among inflammatory pathways, immune responses, and neural mechanisms.
Additionally, environmental and genetic factors play crucial roles in determining an individual's susceptibility to asthma and the severity of their condition.
Critical processes in asthma pathophysiology include:
Additionally, environmental and genetic factors play crucial roles in determining an individual's susceptibility to asthma and the severity of their condition.
Critical processes in asthma pathophysiology include:
2.7K


