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Lipid

life science Maturity 11-13 Vital Level 3

Fats and oils are part of a big group.

Common lipid types.svg
Common lipid types.svg
They help your body stay strong. They can even store energy for later. Some help make up the tiny parts of your cells. They are very useful! Do you eat fats in your food?

46 words

Lipids are a big group of things.

Common lipid types.svg
Common lipid types.svg
They include fats and waxes. They also include things like oils.

These things help your body in many ways. They store energy for later. They also help make the walls of your cells.

Some lipids are very useful. People use them in food. They are also used in makeup.

Some lipids are hard to make. Your body cannot make all of them. You must get them from the food you eat.

It is amazing how they work!

Fat triglyceride shorthand formula.PNG
Fat triglyceride shorthand formula.PNG

91 words

Lipids are a large group of organic molecules.

Common lipid types.svg
Common lipid types.svg
They include many different things like fats, waxes, and oils. They also include vitamins like A, D, E, and K.

Lipids help living things in many ways. One job is to store power for later use. They also act as signals in the body. Another job is to make up cell membranes. A membrane is a thin layer that holds a cell together.

Phospholipids aqueous solution structures.svg
Phospholipids aqueous solution structures.svg
Some lipids are hydrophobic. This means they do not mix with water. Other lipids are amphiphilic. This means they have one part that likes water and one part that does not. This helps them form structures like vesicles. These are tiny sacs.

There are many kinds of lipids. One kind is called triglycerides. These are the main fats found in animal tissue.

Fat triglyceride shorthand formula.PNG
Fat triglyceride shorthand formula.PNG
Another kind is phospholipids. These are key parts of cell walls. Some lipids, called sterols, are also very important. Cholesterol is a well-known sterol. It helps make up cell membranes. Humans must get some essential lipids from food. Our bodies cannot make them on their own.

190 words

Lipids are a very large group of organic molecules.

Common lipid types.svg
Common lipid types.svg
They include many different things like fats, waxes, and oils. They also include vitamins like A, D, E, and K. Lipids are important because they do many jobs for living things. They help store energy for later use. They also act as signals in the body. Another big job is acting as structural components for cell membranes.
Phospholipids aqueous solution structures.svg
Phospholipids aqueous solution structures.svg
Some lipids are hydrophobic, which means they do not mix with water. Other lipids are amphiphilic. This means they have one part that likes water and one part that does not. This special nature allows them to form structures like vesicles or membranes in water.

There are many ways these molecules work. Many lipids are made from two different building blocks. These are called ketoacyl and isoprene groups. One group of lipids is called fatty acyls. These are made of a long carbon chain. The chain can be between four and 24 carbons long.

Prostacyclin-2D-skeletal.png
Prostacyclin-2D-skeletal.png
If the chain has a double bond, it can bend. This bending helps make cell membranes stay fluid. Another group is glycerolipids. The most common type is the triglyceride.
Fat triglyceride shorthand formula.PNG
Fat triglyceride shorthand formula.PNG
These are made of glycerol and fatty acids. They are the main way animals store fat in their tissues.

People have studied lipids for a long time. In 1815, Henri Braconnot put lipids into two groups. He called them suifs, which are solid greases, and huiles, which are fluid oils. In 1823, Michel Eugène Chevreul made a longer list. He included waxes, resins, and essential oils. In 1827, William Prout realized that fat is an important nutrient.

Geraniol structure.png
Geraniol structure.png
Later, scientists found new kinds of lipids. Theodore Gobley discovered phospholipids in 1847. He called them lecithins. He found them in the brains of mammals and in hen eggs. In 1923, Gabriel Bertrand introduced the word "lipide." This word was later changed to the English word "lipid."

Scientists use many categories to group these molecules. The Lipid MAPS consortium uses eight different categories. These include fatty acyls, glycerolipids, and glycerophospholipids. They also include sphingolipids, saccharolipids, and polyketides. The last two groups are sterol lipids and prenol lipids.

Cholesterol.svg
Cholesterol.svg
Phospholipids are very important for cells. They are key parts of the lipid bilayer. This is the double layer that makes up cell membranes. Some phospholipids, like phosphatidylcholine, are found everywhere in nature. Other types, like sphingomyelins, are found in the brains of mammals.
Sphingomyelin-horizontal-2D-skeletal.png
Sphingomyelin-horizontal-2D-skeletal.png

Lipids are all around us in daily life. We see them in the food we eat every day. They are used in the cosmetic industry to make creams. They are even used in nanotechnology.

Kdo2-lipidA.png
Kdo2-lipidA.png
Some lipids, called sterols, are very famous. Cholesterol is a well-known sterol. It is a part of cell membranes. Plants have their own versions called phytosterols. Fungi use a different kind called ergosterol. Even though our bodies use lipids for many things, we cannot make them all. Humans must get some essential lipids from the food we eat.

507 words

Lipids are a broad and diverse group of organic compounds.

Common lipid types.svg
Common lipid types.svg
They include familiar substances like fats, waxes, and oils. They also encompass sterols, fat-soluble vitamins like A, D, E, and K, and phospholipids. Lipids serve several vital biological functions. They act as long-term energy stores for organisms. They also function as signaling molecules to communicate within the body. Furthermore, they serve as the primary structural components of cell membranes. Lipids are broadly defined by their relationship with water. Many are hydrophobic, meaning they do not dissolve in water. Others are amphiphilic, possessing both water-loving and water-fearing parts. This amphiphilic nature allows them to form complex structures like vesicles or membranes in aqueous environments.
Phospholipids aqueous solution structures.svg
Phospholipids aqueous solution structures.svg

Biological lipids are built from two distinct types of biochemical subunits. These building blocks are known as ketoacyl groups and isoprene groups. Using these subunits, scientists divide lipids into eight main categories. The first six categories are derived from ketoacyl subunits. These include fatty acyls, glycerolipids, glycerophospholipids, sphingolipids, saccharolipids, and polyketides. The remaining two categories come from isoprene subunits. These are sterol lipids and prenol lipids. Fatty acyls are a fundamental category. They consist of a hydrocarbon chain that ends with a carboxylic acid group. This structure creates a polar, hydrophilic end and a nonpolar, hydrophobic end. The carbon chains are typically between four and 24 carbons long. These chains can be saturated or unsaturated. If a chain has a double bond, it may exhibit cis or trans isomerism. Cis-double bonds cause the chain to bend. This bending is crucial for maintaining membrane fluidity in various environments.

Prostacyclin-2D-skeletal.png
Prostacyclin-2D-skeletal.png

Glycerolipids are another major class of lipids. They are composed of mono-, di-, or tri-substituted glycerols. The most well-known members are triglycerides, also called triacylglycerols. In these molecules, three fatty acids are attached to a glycerol backbone through ester bonds. Triglycerides serve as the primary energy storage in animal tissues. When the body needs energy, it uses hydrolysis to break these ester bonds. This process releases glycerol and fatty acids for metabolism. Some glycerolipids, called glycosylglycerols, include sugar residues attached to the glycerol. Examples include digalactosyldiacylglycerols found in plant membranes.

Fat triglyceride shorthand formula.PNG
Fat triglyceride shorthand formula.PNG

Glycerophospholipids, or phospholipids, are essential components of the lipid bilayer in cell membranes. They are also involved in metabolism and cell signaling. These molecules can be subdivided based on their polar headgroups. In eukaryotes and bacteria, these headgroups are at the sn-3 position of the glycerol backbone. In archaebacteria, they are at the sn-1 position. Common examples include phosphatidylcholine, phosphatidylethanolamine, and phosphatidylserine. Some glycerophospholipids, such as phosphatidylinositols, act as second messengers in cells. Neural tissue contains high amounts of these lipids. Changes in their composition are linked to various neurological disorders.

Sphingolipids form a complicated family of compounds. They share a common structural feature called a sphingoid base backbone. This backbone is synthesized from the amino acid serine and a long-chain fatty acyl CoA. This process produces ceramides, which can then be converted into other compounds. The primary sphingoid base in mammals is sphingosine. Mammals use sphingomyelins as their major phosphosphingolipids.

Sphingomyelin-horizontal-2D-skeletal.png
Sphingomyelin-horizontal-2D-skeletal.png
Insects primarily contain ceramide phosphoethanolamines. Fungi use different versions, such as phytoceramide phosphoinositols. Glycosphingolipids are a diverse group that includes cerebrosides and gangliosides. These molecules contain one or more sugar residues linked to the sphingoid base.

Sterols are a specialized group of lipids that include cholesterol. They are critical components of cell membranes alongside phospholipids and sphingomyelins. Sterols are defined as steroids that have a hydroxyl group at the third carbon position. They share a fused four-ring core structure with other steroids. In mammals, the liver synthesizes bile acids, which are oxidized derivatives of cholesterol. Plants use different versions called phytosterols, such as β-sitosterol. Fungi rely on ergosterol for their cell membranes.

Cholesterol.svg
Cholesterol.svg
Steroids also function as important hormones. These include the eighteen-carbon estrogen family and the nineteen-carbon androgens like testosterone. The twenty-one-carbon subclass includes progestogens and glucocorticoids. Vitamin D belongs to a group called secosteroids.

The history of lipid science shows how our understanding has grown. In 1815, Henri Braconnot classified lipids into solid greases (suifs) and fluid oils (huiles). Michel Eugène Chevreul expanded this in 1823 to include waxes and resins. In 1827, William Prout identified fat as a vital nutrient for humans and animals. The first synthetic triglyceride was created by Théophile-Jules Pelouze in 1844. Later, Theodore Gobley discovered phospholipids in 1847, calling them lecithins. The term "lipid" was introduced by Gabriel Bertrand in 1923. This term was officially approved by the international commission of the Société de Chimie Biologique on July 3, 1923. Today, lipids are essential to many industries. They are used in food, cosmetics, and even nanotechnology.

Kdo2-lipidA.png
Kdo2-lipidA.png

779 words
🖼️ Images & Media (10)
File:Common lipid types.svg
Common lipid types.svg
File:Prostacyclin-2D-skeletal.png
Prostacyclin-2D-skeletal.png
File:Leukotriene B4.svg
Leukotriene B4.svg
File:Fat triglyceride shorthand formula.PNG
Fat triglyceride shorthand formula.PNG
File:Phosphatidyl-ethanolamine.svg
Phosphatidyl-ethanolamine.svg
File:Sphingomyelin-horizontal-2D-skeletal.png
Sphingomyelin-horizontal-2D-skeletal.png
File:Cholesterol.svg
Cholesterol.svg
File:Geraniol structure.png
Geraniol structure.png
File:Kdo2-lipidA.png
Kdo2-lipidA.png
File:Phospholipids aqueous solution structures.svg
Phospholipids aqueous solution structures.svg
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