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相关概念视频

Overview of Lipid Metabolism01:24

Overview of Lipid Metabolism

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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...
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Overview of Fatty Acid Metabolism01:28

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Lipids also are sources of energy that power cellular processes. Like carbohydrates, lipids are composed of carbon, hydrogen, and oxygen, but these atoms are arranged differently. Most lipids are nonpolar and hydrophobic. Major types include fats and oils, waxes, phospholipids, and steroids.
Fatty acids are catabolized in a process called beta-oxidation, which takes place in the matrix of the mitochondria and converts their fatty acid chains into two-carbon units of acetyl groups. The acetyl...
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Mitochondria01:37

Mitochondria

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Mitochondria are eukaryotic cellular organelles that are known to produce energy through a process called oxidative phosphorylation. Besides their primary function, mitochondria are involved in various cellular processes, including cell growth, differentiation, signaling, metabolism, and senescence. Age-related changes cause a decline in mitochondrial quality and integrity due to increased mitochondrial mutations and oxidative damage. Thus, aging can severely impact mitochondrial functions,...
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A single mitochondrion is a bean-shaped organelle enclosed by a double-membrane system. The outer membrane of mitochondria is smooth and contains many porins - the integral membrane transporters. Porins enable free diffusion of ions and small uncharged molecules through the outer mitochondrial membrane but limit the transport of molecules larger than 5000 Daltons. Further, the outer mitochondrial membrane forms a unique structure called membrane contact sites with other subcellular organelles,...
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代谢功能障碍中的线粒体功能障碍 脂肪肝疾病 (MAFLD)

Ying Zhao1,2, Yanni Zhou1,2, Dan Wang1,2

  • 1Division of Liver Surgery, Department of General Surgery, West China Hospital, Sichuan University, Chengdu 610041, China.

International journal of molecular sciences
|December 23, 2023
PubMed
概括

代谢功能障碍脂肪肝病 (MAFLD),以前称为NAFLD,与线粒体问题和肠道健康有关. 目前的治疗重点是抗氧化剂,试剂和肠道微生物组调节.

关键词:
马夫尔德 (MAFLD) 是一个脂肪酸代谢 脂肪酸代谢肝肠轴 肝肠轴 肝肠轴线粒体抗氧化剂是线粒体抗氧化剂.线粒体质量控制的质量控制氧化应激是一种氧化应激.

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科学领域:

  • 肝病学 肝病学是一种肝病学.
  • 线粒体生物学 线粒体生物学
  • 胃肠病学 胃肠病学

背景情况:

  • 非酒精性脂肪性肝病 (NAFLD) 是一种常见的疾病,导致肝硬化和肝细胞癌 (HCC).
  • 现在NAFLD被称为代谢功能障碍脂肪肝病 (MAFLD),因为它与代谢障碍有很强的联系.
  • MAFLD与肝外疾病有关,但有效的治疗方法仍然难以捉摸.

研究的目的:

  • 审查目前对MAFLD病变的理解,重点关注线粒体功能障碍.
  • 探索线粒体功能障碍与MAFLD肝肠轴之间的相互作用.
  • 总结MAFLD的潜在治疗策略.

主要方法:

  • 关于MAFLD的最新科学文献的综述.
  • 对研究肝细胞和肝星细胞中线粒体功能障碍的研究进行分析.
  • 检查MAFLD发展中的肝肠轴研究.

主要成果:

  • 肝细胞和肝星细胞中的线粒体功能障碍有助于MAFLD的脂肪积累和脂毒性.
  • 混乱的线粒体结构和功能加剧了MAFLD的进展.
  • 肝肠轴在MAFLD的发病过程中起着重要作用.

结论:

  • MAFLD的发病包括线粒体功能障碍和肝肠轴相互作用的改变.
  • 潜在的治疗途径包括抗氧化剂,特定试剂,以及肠道微生物和代谢物的调节.
  • 需要进一步的研究来开发有效的MAFLD治疗方法.