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相关概念视频

Fluid Mosaic Model01:19

Fluid Mosaic Model

Scientists identified the plasma membrane in the 1890s and its principal chemical components (lipids and proteins) by 1915. The model for plasma membrane structure, proposed in 1935 by Hugh Davson and James Danielli, was the first model to be widely accepted in the scientific community. The model was based on the plasma membrane's "railroad track" appearance in early electron micrographs. Davson and Danielli theorized that the plasma membrane's structure resembled a sandwich with the analogy of...
Membrane Lipids01:32

Membrane Lipids

Lipids are an essential component of all biological membranes. The average lipid content in mammalian membranes is 50%, though it can be as low as 20% in the inner mitochondrial membrane or as high as 80% in the myelin sheath present around the nerve cells.
Phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, and sphingomyelin are the most common phospholipids present in mammalian membranes. At physiological pH, phosphatidylserine is negatively charged, while the other three...
Asymmetric Lipid Bilayer01:35

Asymmetric Lipid Bilayer

Biological membranes show uneven distribution of different types of lipids in the inner and outer layers, resulting in transverse asymmetric membranes. The treatment of the erythrocyte membrane with the enzyme phospholipase confirmed the asymmetric nature of the lipid bilayer. The enzyme hydrolyzes lipids into fatty acids and hydrophilic groups. The phospholipase acts only on the outer layer of the membrane, while the inner layer remains intact. The phospholipase treatment resulted in 80%...
Synthesis of Phosphatidylcholine in the ER Membrane01:27

Synthesis of Phosphatidylcholine in the ER Membrane

The ER synthesizes lipids for building cell membranes and performing cellular functions such as energy storage and signaling. The lipid synthesis machinery embedded in the ER membrane primarily collects all reactants from the cytosol. Following synthesis, the secretory pathway and the ER contact sites distribute these lipids to other cellular organelles. Additionally, the energy-rich triacylglycerides are transported from the ER via lipid droplets.
The major components of all eukaryotic cell...
What are Lipids?01:31

What are Lipids?

Lipids function as structural components of cellular membranes, in addition to acting as energy reservoirs and signaling molecules. They are thus crucial to all living organisms.  The three biologically important classes of lipids are triglycerides, phospholipids, and steroids.
Non-Polar and Hydrophobic Characteristics of Lipids
Lipids are a structurally and functionally diverse group of hydrocarbons—compounds consisting of carbon and hydrogen atoms. The carbon-carbon and carbon-hydrogen bonds...
Membrane Lipids01:32

Membrane Lipids

Lipids are an essential component of all biological membranes. The average lipid content in mammalian membranes is 50%, though it can be as low as 20% in the inner mitochondrial membrane or as high as 80% in the myelin sheath present around the nerve cells.
Phosphatidylcholine, phosphatidylethanolamine, phosphatidylserine, and sphingomyelin are the most common phospholipids present in mammalian membranes. At physiological pH, phosphatidylserine is negatively charged, while the other three...

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Biomembrane Fabrication by the Solvent-assisted Lipid Bilayer (SALB) Method
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在1,2-dipalmitoyl-sn-glycero-3-phosphocholine/水层系统中的化学波和模式形成.

Agnese Magnani1, Nadia Marchettini, Sandra Ristori

  • 1Department of Chemical and Biosystems Sciences, University of Siena, Viale Aldo Moro 2, 53100 Siena, Italy.

Journal of the American Chemical Society
|September 16, 2004
PubMed
概括

研究人员探索了脂双层内的贝卢索夫·扎博丁斯基反应,模仿细胞膜. 他们观察到稳定的图灵图案和螺旋波,揭示了异型环境中复杂的化学动态.

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科学领域:

  • 化学动力学 化学动力学
  • 生物物理学的生物物理.
  • 材料科学是一种材料科学.

背景情况:

  • 贝卢索夫·扎博丁斯基反应是化学振荡器的经典例子.
  • 脂二层,由脂胆和水组成,形成异型,分层结构.
  • 这些结构作为生物细胞等离子体膜的模型系统.

研究的目的:

  • 为了研究Belousov Zhabotinsky反应-扩散系统在一个异型酸胆/水环境.
  • 描述这种脂质双层系统中出现的空间结构,如图灵图案和螺旋波.

主要方法:

  • 空间扩展的反应扩散建模.
  • 利用酸丁胆/水二元系统,创建由脂质双层分离的异型,分层的水域.

主要成果:

  • 在脂二层中观察到稳定的图灵模式.
  • 螺旋波和其他异国情调的空间结构被成功生成.
  • 脂质双层的异型性质影响了这些模式的形成.

结论:

  • 脂二层可以支持复杂,稳定的化学模式.
  • 这些发现表明,在生物学上相关的膜模型中研究反应-扩散动态的潜力.
  • 这项工作突出了异构环境对化学系统模式形成的影响.