Apo B-48基因表达和低密度脂蛋白作为增加胰岛素抵抗和严重性的因素
Ahmed Ibrahim AbdElneam1, Mohammed Saleh Al-Dhubaibi2, Saleh Salem Bahaj3
1Department of Clinical Biochemistry, Department of Basic Medical Sciences, College of Medicine, Shaqra University, Dawadmi, Saudi Arabia; Molecular Genetics and Enzymology Department, Human Genetics and Genome Research Institute, National Research Center, 33 El Bohouth St. (former El Tahrir St.), Dokki 12622, Cairo, Egypt.
Gene
|August 12, 2023
概括
胰岛素耐药性与普通有关,严重病例显示脂质水平较高和Apo B-48基因表达升高. 这表明发育和脂质特征异常存在遗传因素.
科学领域:
- 皮肤病学和内分泌学
- 遗传学和新陈代谢
背景情况:
- 胰岛素刺激雄激素的合成,有助于过多的脂质,超化和的脂质腺生长.
- 与脂质特征异常有关,可能受到遗传因素和胰岛素抵抗的影响.
研究的目的:
- 为了研究在中脂质特征异常的遗传诱导.
- 在患者中建立胰岛素耐药性和脂质概况之间的相关性.
主要方法:
- 一项具有病例控制设计的分析横截面研究,涉及72名病患者和72名健康对照.
- 收集的数据包括病史,疾病严重程度/持续时间,人体测量,脂质概况,禁食葡萄糖,禁食胰岛素,胰岛素耐药性和Apo B-48折叠变化.
主要成果:
- 严重患者表现出显著增加的甘油三 (TG),总胆固醇 (TC),LDL-C,禁食葡萄糖,禁食胰岛素和胰岛素抵抗.
- 在患者中,Apo B-48表达显著增加 (P=0.005).
- 在Apo B-48折叠变化,胰岛素耐药性和的严重程度之间观察到强烈的正线性关联.
结论:
- 患者表现出异常的脂质样本,严重的形式与胰岛素抵抗,葡萄糖和胰岛素水平的增加有关.
- 在严重患者中,脂肪异常的Apo B-48基因表达升高凸显了遗传因素的作用.
- 常见的治疗药物伊索特里诺因也可能导致脂质异常.
更多相关视频
相关概念视频
Obesity
534
The Body Mass Index (BMI) is a numerical value derived from a person's weight and height, used to categorize individuals into weight ranges. It is calculated using the formula: weight in kilograms divided by height in meters squared. Obesity is a health condition characterized by excessive accumulation of adipose tissue that poses health risks, often diagnosed with a BMI ≥ 30. This excess fat storage occurs when surplus dietary calories are converted into triglycerides and stored in...
534
Cell Specific Gene Expression
13.6K
Multicellular organisms contain a variety of structurally and functionally distinct cell types, but the DNA in all the cells originated from the same parent cells. The differences in the cells can be attributed to the differential gene expression. Liver cells, whose functions include detoxification of blood, production of bile to metabolize fats, and synthesis of proteins essential for metabolism, must express a specific set of genes to perform their functions. Gene expression also varies with...
13.6K
Cholesterol: Significance and Regulation
584
Although not a source of energy, cholesterol plays a significant role as a foundational structure for bile salts, steroid hormones, and vitamin D, as well as being a crucial component of plasma membranes. Approximately 15% of blood cholesterol is derived from our diet, with the remainder synthesized from acetyl CoA by the liver and intestines. Cholesterol is eliminated from the body through its conversion into bile salts, which are eventually discarded in the feces.
Considering cholesterol and...
Considering cholesterol and...
584
Overview of Lipid Metabolism
1.8K
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...
1.8K
Insulin: The Receptor and Signaling Pathways
1.3K
Insulin action is mediated through a receptor tyrosine kinase, akin to the IGF-1 receptor. The number of receptors per cell varies significantly, from 40 on erythrocytes to 300,000 on adipocytes and hepatocytes. The insulin receptor consists of linked α/β subunit dimers, forming a heterotetramer glycoprotein with two extracellular α subunits and two β subunits spanning the membrane. The α subunits inhibit the inherent tyrosine kinase activity of the β subunits, but...
1.3K


