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相关概念视频

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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Introduction to Membrane Traffic01:44

Introduction to Membrane Traffic

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The ER, Golgi apparatus, endosomes, and lysosomes work in tandem to modify, sort, and package proteins and lipids. An integrated membrane trafficking network facilitates the back and forth shuttling of molecules within different organelles in the same cell or across the cell membrane.
The transport of soluble and membrane proteins is mediated by transport vesicles that collect cargo from one cellular compartment and deliver it to another by fusing with the target organelle membrane. The Rab...
7.0K
Cellular Membranes and Drug Transport01:24

Cellular Membranes and Drug Transport

370
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.
370
Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport01:23

Mechanisms of Drug Absorption: Paracellular, Transcellular, and Vesicular Transport

476
Drugs need to permeate cell membranes to reach their target sites after administration. Orally administered drugs must transcend intestinal epithelial membrane barriers to infiltrate the systemic circulation. Drugs with a molecular weight of less than 500 Daltons diffuse through gaps between neighboring cells, called paracellular pathways.
However, most drugs use the transcellular route, traversing directly through the cell membranes via two mechanisms: passive and active transport. Passive...
476
Facilitated Diffusion01:16

Facilitated Diffusion

349
The plasma membrane, a critical structure in cellular biology, houses an array of transporters, or carrier proteins, interspersed within its lipid bilayer. These proteins play a crucial role in solute transport through facilitated diffusion, a form of passive diffusion that uses transporters to move the molecules across the membrane.
In this process, substrates such as organic compounds and ions interact with a transporter on one side, triggering conformational changes in proteins that enable...
349
The Significance of Membrane Transport01:44

The Significance of Membrane Transport

24.3K
The transport of solutes across the cell membrane is essential for metabolic processes, like maintaining cell size and volume, generating the action potential, exchanging nutrients and gases, etc. Membrane transport can be either passive or active. It can be simple diffusion, facilitated, or mediated transport aided by transport proteins such as transporters and channels.
Transporters facilitate either an active or passive movement of solutes. They can allow a single-molecule transport down its...
24.3K

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相关实验视频

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Models and Methods to Evaluate Transport of Drug Delivery Systems Across Cellular Barriers
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Models and Methods to Evaluate Transport of Drug Delivery Systems Across Cellular Barriers

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在运输过程中的细胞间高速公路.

Edina Szabó-Meleg1

  • 1Department of Biophysics, Medical School, University of Pécs, Pécs, Hungary. edina.meleg@aok.pte.hu.

Results and problems in cell differentiation
|September 6, 2024
PubMed
概括

道膜纳米管 (TNTs) 是重要的细胞延伸,可实现直接通信. 这些多样化的结构运输细胞材料,并在再生,免疫力和神经退行和癌症等疾病中发挥作用.

科学领域:

  • 细胞生物学 细胞生物学
  • 生物物理学的生物物理.

背景情况:

  • 细胞间的通信对于多细胞生物是必不可少的.
  • 2004年发现的道膜纳米管 (TNTs) 是富含动氨酸的细胞延伸,可促进细胞间直接的物质转移.

研究的目的:

  • 探索TNTs多样化的结构,功能和生物作用.
  • 突出TNT在各种生理和病理过程中的重要性.

主要方法:

  • 对TNTs现有文献的审查.
  • 在体外和体内研究的分析研究TNT的形成和功能.

主要成果:

  • TNTs表现出多样化的形态,对于运输膜组件,有机体和核酸至关重要.
  • 在神经退行性疾病中,TNT与病原体 (细菌,病毒) 和错误折叠的蛋白质的传播有关.
  • 证据支持TNT参与细胞分化,组织再生,免疫反应和瘤发生.

结论:

  • TNTs代表了一种具有广泛生物学意义的细胞间通信的重要方式.
  • 对TNT的进一步研究可以提供有关疾病机制和潜在治疗策略的见解.
关键词:
细胞通信 细胞通信细胞骨架 细胞骨架膜纳米管的使用方法神经退行性疾病的神经退行性疾病交通运输 交通运输 交通运输 交通运输 交通运输

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