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相关概念视频

The Blood-brain Barrier00:49

The Blood-brain Barrier

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Overview
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Physiological Barriers01:25

Physiological Barriers

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Physiological barriers are semi-permeable cellular structures restricting drug diffusion into intracellular compartments and tissues. There are six types of physiological barriers: blood endothelial, cell membrane, blood-brain, blood-cerebrospinal fluid (CSF), blood-placenta, and blood-testis barriers.
The blood endothelial barrier is the most porous of these. It allows all small ionized, un-ionized, and lipophilic molecules to pass through the endothelial lining into the interstitial space...
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Factors Affecting Drug Distribution: Physiological Barriers01:23

Factors Affecting Drug Distribution: Physiological Barriers

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Drug distribution in the body is intricately regulated by various physiological barriers that control the passage of substances. These include the capillary endothelial barrier, the blood-brain, blood-cerebrospinal fluid, blood-placental, and blood-testis barriers.
The capillary endothelial barrier allows only smaller molecules below 600 Da (Daltons) to pass through. It also restricts drugs like heparin that are bound to blood components, limiting their movement within the bloodstream.
The...
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Transcellular Transport of Solutes01:23

Transcellular Transport of Solutes

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Transcellular transport of solutes is the movement of substances like monosaccharides and amino acids through polarized cells. This transport mechanism is primarily seen in epithelial and endothelial cells aided by membrane transport proteins such as channels and transporters. The tight junctions between these cells confine the membrane proteins to the two sides of the cell. The epithelial cells have distinct apical and basolateral domains. In contrast, the endothelial cells show the luminal...
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Cellular Membranes and Drug Transport01:24

Cellular Membranes and Drug Transport

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Drugs must traverse multiple biological barriers, such as multi-layered skin, single-layered intestinal epithelium, and the plasma membrane, to reach their target sites within the body. The plasma membrane, a highly structured composite of phospholipids, carbohydrates, and proteins, is the cell's protective boundary, facilitating selective substance exchange.
Phospholipids arrange themselves into a bilayer, with hydrophilic heads oriented outward and hydrophobic tails facing inward.
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Updated: Jan 14, 2026

Analyzing the Permeability of the Blood-Brain Barrier by Microbial Traversal through Microvascular Endothelial Cells
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血脑屏障是血液与大脑之间的屏障.

Audrey Chagnot1, Axel Montagne1

  • 1UK Dementia Research Institute at the University of Edinburgh, 49 Little France Crescent, Edinburgh EH16 4SB, UK; British Heart Foundation - UK Dementia Research Institute Centre for Vascular Dementia Research at the University of Edinburgh, 49 Little France Crescent, Edinburgh EH16 4SB, UK; Institute for Neuroscience and Cardiovascular Research (INCR), Chancellor's Building, The University of Edinburgh, 49 Little France Crescent, Edinburgh EH16 4SB, UK.

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概括

中枢神经系统 (CNS) 使用专门的血液屏障来保护大脑免受内部威胁. 本书详细介绍了血脑屏障 (BBB) 的结构和功能.

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科学领域:

  • 神经科学是一个神经科学.
  • 生理学 生理学 生理学
  • 血管生物学 血管生物学

背景情况:

  • 中枢神经系统 (CNS) 集成环境信息,协调生物体的反应.
  • 中枢神经系统需要对身体创伤和内部威胁 (如毒素和病原体) 进行保护.
  • 专门的血管适应,称为"血液屏障",进化以控制血液-CNS交换.

研究的目的:

  • 为提供血液-大脑屏障 (BBB) 的结构和功能特征的入门资料.

主要方法:

  • 本书的重点是关于BBB的描述和解释内容.
  • 突出了BBB的关键结构和功能方面.

主要成果:

  • 血脑屏障 (BBB) 是一个关键的接口,控制血液和大脑之间的分子流量.
  • 它独特的细胞和分子组成确保了中枢神经系统的保护和平衡.

结论:

  • 了解BBB的结构和功能对于理解中枢神经系统生理学和病理学至关重要.
  • BBB的专业性强调了保护中枢神经系统的复杂适应.