Some foods help our bodies. 
Some foods help our bodies. 
This food helps keep us well. It helps protect our tiny cells. It works like a shield for cells.
Plants make this food too. It helps plants stay strong in the sun. It also helps seeds grow well.
Most people get enough from food. It is rare to not have enough. This is because many foods have it.
Eating well is a great way to stay healthy! 
Vitamin E is a group of eight compounds.
Vitamin E acts as an antioxidant. An antioxidant is a helper that protects cells.
You can find vitamin E in many foods. It is in seeds, nuts, and peanut butter. It is also in many oils. 
Plants make vitamin E in parts called plastids. It helps plants stay safe from sunlight. It also helps seeds stay fresh. Without it, seed fats might go rancid.
Some people take vitamin E as a supplement. These are often made in a lab. The natural form is called d-alpha-tocopherol. The man-made form is called dl-alpha-tocopherol. The natural form is more potent than the man-made kind.
Vitamin E is a very important group of eight different compounds. 
Vitamin E works as an antioxidant to protect our bodies.
People have been studying this vitamin for a long time.
There are many different forms of these molecules. 
Plants make their own vitamin E in parts called plastids. 
Vitamin E is a vital group of eight related compounds. These molecules are known as tocochromanols. This group includes four tocopherols and four tocotrienols. Scientists classify vitamin E as an essential nutrient for humans. This means the human body requires it to function properly. Most government organizations recommend that adults consume between 3 and 15 mg per day. A 2016 worldwide review found a median dietary intake of 6.2 mg per day.
These compounds function primarily as fat-soluble antioxidants. They work to protect cell membranes from reactive oxygen species. These species are often called free radicals.
All eight vitamers share a specific molecular structure. They all feature a chromane double ring. They also possess a hydrophobic side chain. This side chain allows the molecule to penetrate into biological membranes. The eight forms are divided into two main groups. The first group consists of four tocopherols. The second group consists of four tocotrienols.
Each of the two groups contains four distinct types. These types are named alpha (α), beta (β), gamma (γ), and delta (δ). These names are determined by the number and position of methyl groups on the ring. For example, alpha-tocopherol has three methyl groups at specific sites. Delta-tocopherol has only one methyl group at a specific site. 
History shows how our understanding of this nutrient has evolved. Vitamin E was first discovered in 1922. Scientists isolated the substance in 1935. By 1938, the first synthetic version was created. The name "tocopherol" comes from Greek words meaning "birth" and "to bear." This name was chosen because the vitamin was found to be essential for fertilized eggs in rats to result in live births.
In the United States, the use of vitamin E supplements has changed over time. Use of these supplements peaked around the year 2002. However, use declined by more than 50% by 2006. This decline was likely due to meta-analyses of scientific studies. These studies suggested that very high doses might offer no benefit or could even have negative consequences. 
Plants synthesize these compounds in their plastids. They use the Shikimate pathway to create the chromanol ring. They use the MEP pathway to create the hydrophobic tail.
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