A lamellar system refers to a molecular organization in which molecules are arranged in stacked layers, resembling the structure of a book. This structure is often found in biological membranes and some liquid crystalline phases in chemistry. Lamellar systems play a crucial role in the function and stability of various biological structures.
Stratum granulosum
Lamellar granules are responsible for secreting lipids and enzymes in the skin that help maintain the skin barrier function. These granules release their contents into the intercellular spaces of the skin, contributing to skin hydration and barrier protection.
Ceramides are the main glycolipids found in the epidermis. They play a critical role in maintaining the skin barrier function by helping to retain moisture and protect against environmental stressors.
Pearlite enhances the strength and hardness of steel due to its fine lamellar structure. It can also improve wear resistance and toughness. However, an excess of pearlite can make the material too brittle, affecting its overall toughness.
Lyotropic liquid crystals in aqueous systems are self-assembled structures formed by amphiphilic molecules (containing hydrophilic and hydrophobic regions) in water. These structures can exhibit different phases like micelles, hexagonal or lamellar phases, depending on the concentration and temperature. They have applications in various fields such as drug delivery, cosmetics, and materials science.
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it means inclined plate structure
in the the stratum granulosum cells of the epidermis.
A system of interconnected vesicular and lamellar cytoplasmic mambranes that functions especially in the transport of materials within the cell and that is studded with ribosomes in some places.
Lamellar bodies are formed in the stratum granulosum layer of the epidermis. These structures contain lipids and enzymes that participate in skin barrier function and hydration.
Stratum granulosum
LPA stands for lamellar pearlitic anneal. It is a type of heat treating process for steel.
Aenigmatite is a mineral of sodium, iron and titanium, which forms brown to black triclinic lamellar crystals.
Francoise Herrouin has written: 'Creep of a fully lamellar [gamma]-Tial alloy'
65710-LT
Lamellar granules are responsible for secreting lipids and enzymes in the skin that help maintain the skin barrier function. These granules release their contents into the intercellular spaces of the skin, contributing to skin hydration and barrier protection.
The most probable explanation is the specific structure of grouped crystals - a lamellar type.