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相关概念视频

Glucose Absorption Into the Small Intestine01:26

Glucose Absorption Into the Small Intestine

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Complex carbohydrates consumed cannot be absorbed into the small intestine in their original form. First, they must be hydrolyzed to a monosaccharide form such as glucose or galactose. These monosaccharides are then transported across the intestinal membrane and into the blood via transcellular transport. The intestinal epithelial cells allow the movement of these monosaccharides with a defined 'entry' through membrane transporter proteins present on their apical membrane and...
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Glucose Homeostasis: Pancreatic Islets and Insulin Secretion01:27

Glucose Homeostasis: Pancreatic Islets and Insulin Secretion

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The pancreatic islets comprising only 1%-2% of the volume are highly vascularized and innervated mini-organs. They contain five endocrine cell types, including β cells that secrete insulin, which is synthesized as a single polypeptide chain, preproinsulin, processed to proinsulin, and finally to insulin and C-peptide. This process is complex and regulated, involving the Golgi complex, the endoplasmic reticulum, and the secretory granules of the β cell.
Insulin and C-peptide are...
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Glucose Transporters01:27

Glucose Transporters

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Glucose transporters facilitate the transport of glucose across the cell membrane. In addition to glucose, some glucose transporters can also aid the movement of other hexoses such as fructose, mannose, and galactose.
Facilitated diffusion-glucose transporters (GLUTs) are encoded by the solute-linked carrier (SLC) family 2, subfamily A gene family, or SLC2A. The 14 GLUT protein members are distributed into three classes:
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Overview of Carbohydrate Metabolism01:19

Overview of Carbohydrate Metabolism

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Carbohydrate metabolism is a fundamental biochemical process that ensures a constant supply of energy to living cells. The most important carbohydrate is glucose, which can be broken down via glycolysis to enter into the Krebs cycle and eventually lead to the production of ATP through oxidative phosphorylation.
Glucose transport into cells is facilitated by a family of transport proteins called GLUT (Glucose Transporters). GLUT4 is the primary glucose transporter for insulin-stimulated glucose...
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What is Glycolysis?00:56

What is Glycolysis?

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Overview
Cells make energy by breaking down macromolecules. Cellular respiration is the biochemical process that converts "food energy" (from the chemical bonds of macromolecules) into chemical energy in the form of adenosine triphosphate (ATP). The first step of this tightly regulated and intricate process is glycolysis. The word glycolysis originates from the Latin glyco (sugar) and lysis (breakdown). Glycolysis serves two main intracellular functions: generating ATP and generating...
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Diabetes: Symptoms, Diagnosis, and Complications01:15

Diabetes: Symptoms, Diagnosis, and Complications

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For most patients, experiencing several weeks of polyuria, polydipsia, fatigue, and significant weight loss may indicate the presence of diabetes. Furthermore, adults displaying the phenotypic appearance of type 2 diabetes (particularly those who are obese and not initially insulin-requiring), may have islet cell autoantibodies, suggesting autoimmune-mediated β cell destruction and a diagnosis of latent autoimmune diabetes of adults (LADA). The categorization of glucose homeostasis is...
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相关实验视频

Updated: Jun 5, 2025

In Vivo Imaging of Cerebrospinal Fluid Transport through the Intact Mouse Skull using Fluorescence Macroscopy
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In Vivo Imaging of Cerebrospinal Fluid Transport through the Intact Mouse Skull using Fluorescence Macroscopy

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对淋巴系统功能障碍和葡萄糖连续体的洞察

Tsvetelina Velikova1, Georgi Vasilev1,2

  • 1Medical Faculty, Sofia University St. Kliment Ohridski, Sofia 1407, Bulgaria.

World journal of diabetes
|December 16, 2024
PubMed
概括

2型糖尿病可能会损害大脑的淋巴系统功能. 周周血管空间 (DTI-ALPS) 的扩散张力成像揭示了这种功能障碍,为糖尿病相关的大脑损伤提供了洞察力.

科学领域:

  • 神经学 神经学
  • 代谢障碍 代谢障碍 代谢障碍
  • 医疗成像医学成像

背景情况:

  • 淋巴系统从大脑中清除废物.
  • 糖尿病与神经系统并发症有关.
  • 了解糖尿病中的淋巴功能至关重要.

研究的目的:

  • 为了研究不同葡萄糖代谢的患者的淋巴系统功能.
  • 为了将淋巴功能与糖尿病的临床因素相关联.
  • 评估DTI-ALPS在评估淋巴功能中的有用性.

主要方法:

  • 观察性横截面研究设计.
  • 在周围脉空间 (DTI-ALPS) 上利用扩散张力成像指数.
  • 包括具有不同葡萄糖代谢状态的患者.

主要成果:

  • 有证据表明,2型糖尿病患者的脑淋巴系统功能障碍.
  • DTI-ALPS指数受到葡萄糖代谢状态的各种临床变量的影响.
  • 这项研究强调了糖尿病中潜在的淋巴细胞变化.

结论:

关键词:
扩散张力成像沿着周围脉空间.淋巴系统 淋巴系统磁共振成像技术 磁共振成像技术糖尿病前期的情况.2型糖尿病是什么? 2型糖尿病是什么

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  • 这些发现增强了对糖尿病相关脑损伤病理生理学的理解.
  • 淋巴系统功能障碍可能是糖尿病神经系统并发症的关键因素.
  • DTI-ALPS显示出与糖尿病相关的大脑变化的早期诊断的前景.