氧化应激在肝脏病理生理学和疾病中的作用
Abdolamir Allameh1, Reyhaneh Niayesh-Mehr1, Azadeh Aliarab1
1Department of Clinical Biochemistry, Faculty of Medical Sciences, Tarbiat Modares University, Tehran 1411713116, Iran.
Antioxidants (Basel, Switzerland)
|September 28, 2023
概括
由活性氧物种 (ROS) 引起的氧化应激会破坏肝功能,并促进NAFLD和HCC等疾病. 了解这些机制是解决肝脏病理生理学的关键.
科学领域:
- 肝病学 肝病学是一种肝病学.
- 生物化学 生物化学
- 病理生理学 病理生理学
背景情况:
- 肝脏对来自新陈代谢和异生物生物转化的活性氧物种 (ROS) 非常敏感.
- 氧化还原状态的不平衡导致氧化应激,影响肝功能和炎症.
- 氧化应激与急性肝损伤和慢性疾病如病毒性肝炎,酒精性脂肪肝疾病和非酒精性脂肪肝疾病 (NAFLD) 有关.
研究的目的:
- 提供氧化应激对肝脏病理生理学影响的概述.
- 阐明氧化应激驱动肝病进展的机制.
主要方法:
- 文献综述和现有关于肝脏疾病中氧化应激研究的综合研究.
- 分析ROS在调节炎症路径和细胞损伤中的作用.
- 检查氧化应激对纤维化,肝硬化和肝细胞癌 (HCC) 的贡献.
主要成果:
- 氧化应激显著损害肝功能,并促进炎症反应.
- 它是各种肝病的发展和进展的关键因素,包括NAFLD和NASH.
- 氧化应激机制是肝纤维化,肝硬化和HCC的进展不可或缺的一部分.
结论:
- 氧化应激是肝病病原和进展的核心参与者.
- 向ROS和恢复氧化还原平衡可能为肝脏疾病提供治疗策略.
- 对氧化应激机制的进一步研究对于理解和治疗肝脏疾病至关重要.
相关概念视频
Peroxisomes
13.5K
Peroxisomes are specialized organelles present in fungi, plant, and animal cells. It can vary in number, size, morphology, and activity depending on the type of tissue and the nutritional state of the cell. For example, cells with active lipid metabolism, such as adipocytes, neurons, and hepatocytes, have more peroxisomes than other cells in the body. Besides their primary role in breaking down complex organic molecules, peroxisomes can also synthesize specific macromolecules and participate in...
13.5K
Phase I Oxidative Reactions: Overview
295
Phase I biotransformation, or functionalization, is a crucial chemical process that converts drugs and other xenobiotics into more water-soluble forms, facilitating expulsion from the body. It involves oxidative, reductive, and hydrolytic reactions that add or unveil polar functional groups on lipophilic substrates. Key players in phase I reactions are the mixed-function oxidases. Situated in liver cell microsomes, these enzymes predominantly carry out drug metabolism. They require molecular...
295
Liver Physiology
609
The liver, an essential organ in the human body, performs over 200 vital functions that can be broadly categorized into metabolic, hematological, endocrine regulation, and bile production.
Metabolic Regulation:
The liver is the central organ involved in regulating blood composition. It stabilizes blood glucose levels, maintaining them within the range of 70–110 mg/dL. When these levels drop, the liver breaks down glycogen reserves and releases glucose into the bloodstream. It can...
Metabolic Regulation:
The liver is the central organ involved in regulating blood composition. It stabilizes blood glucose levels, maintaining them within the range of 70–110 mg/dL. When these levels drop, the liver breaks down glycogen reserves and releases glucose into the bloodstream. It can...
609
Protein Import into the Peroxisomes
3.5K
Cells contain membrane-bound organelles called peroxisomes that oxidize organic molecules by transferring hydrogen atoms to oxygen, producing hydrogen peroxide. Peroxisomes enzymatically convert the released hydrogen peroxide into water and oxygen.
Peroxisomal Protein Import:
Peroxisomes lack the genetic machinery required to code for their own proteins. Hence, most peroxisomal membrane, lumenal and transmembrane proteins are synthesized in the cytoplasm or ER and transported to the peroxisome...
Peroxisomal Protein Import:
Peroxisomes lack the genetic machinery required to code for their own proteins. Hence, most peroxisomal membrane, lumenal and transmembrane proteins are synthesized in the cytoplasm or ER and transported to the peroxisome...
3.5K
Overview of Lipid Metabolism
1.7K
Lipid metabolism is a crucial process in the human body that involves the synthesis and degradation of lipids. This process is essential for energy production, cell membrane formation, and hormone production, among other functions.
Lipolysis: The Breakdown of Lipids:
Lipolysis is the process of breaking down lipids, particularly triglycerides, into glycerol and fatty acids. This process typically occurs in the adipose tissue and is triggered by various hormones, including glucagon and...
Lipolysis: The Breakdown of Lipids:
Lipolysis is the process of breaking down lipids, particularly triglycerides, into glycerol and fatty acids. This process typically occurs in the adipose tissue and is triggered by various hormones, including glucagon and...
1.7K
Coronary Artery Disease II: Pathophysiology
12
Coronary Artery Disease (CAD) originates from a series of events that impair the function of coronary arteries, the blood vessels responsible for delivering oxygen-rich blood to the heart muscle. The pathophysiology of CAD is closely linked to atherosclerosis, a chronic inflammatory and lipid-driven condition affecting the vascular endothelium.1. Endothelial DamageThe process begins with damage to the vascular endothelium, which serves as a protective barrier between the blood and the vessel...
12


