This is a sweet food. 
This is a sweet food. 
Plants use this food to stay strong. It helps them build their parts. It also helps them grow.
All living things need it too. It gives us the energy we need to move. It travels through the blood of animals.
Scientists first found it in raisins. It is a very important part of life. It helps all living things work well. 
Glucose is a simple sugar. 
Plants use glucose to make cellulose. Cellulose is a big carbohydrate used for cell walls. All living things use glucose to make ATP. ATP is a molecule that cells use for power. Glucose is the most important source of power for all living things.
Animals store glucose as glycogen. In the blood, it is called blood sugar. 
Scientists first found glucose in raisins in 1747. A chemist named Andreas Marggraf did this. Later, Jean-Baptiste Dumas gave it the name glucose in 1838. Glucose can look like a straight chain. It can also look like a ring.
Glucose is a very important simple sugar. 
Glucose works in many different ways to support life. Plants use the sugar to create cellulose. Cellulose is a huge carbohydrate used to build strong cell walls. All living things also use glucose to make ATP. ATP is a molecule that cells use as a source of energy.
People have been studying this sugar for a long time. A German chemist named Andreas Marggraf first isolated glucose from raisins in 1747. Later, Johann Tobias Lowitz discovered it in grapes in 1792. He found it was different from the sugar found in cane. In 1838, Jean-Baptiste Dumas gave it the name glucose.
Many famous scientists won prizes for learning about glucose. Hermann Emil Fischer won the Nobel Prize in 1902 for his work on sugar structures.
You can find glucose in many places in your daily life. It is a main ingredient in honey and is found naturally in fruits.
Glucose is a simple sugar that serves as a fundamental building block for life. Chemically, it is a monosaccharide, which means it is a single sugar unit. It is an aldohexose because it contains six carbon atoms and an aldehyde group. 
The way glucose is made and used involves complex biological processes. Plants and most algae create glucose through photosynthesis. They use water and carbon dioxide to build these sugar molecules. Once made, plants use glucose to create cellulose. Cellulose is a polysaccharide that forms strong cell walls.
Glucose molecules can take different shapes depending on their environment. In a straight line, the molecule is in an open-chain or acyclic form. However, it often folds into a ring-like or cyclic structure. This is common because of the alcohol and aldehyde groups in the molecule. In water, glucose exists mostly as pyranose rings. These can be in two different forms called alpha or beta.
Humans have a long history of studying this important molecule. Andreas Marggraf first isolated glucose from raisins in 1747. Later, in 1792, Johann Tobias Lowitz discovered it in grapes. He was able to show it was different from cane sugar, known as sucrose. In 1838, Jean-Baptiste Dumas coined the term "glucose." The name comes from Ancient Greek words for "sweet wine." 
Many researchers have won Nobel Prizes for their work on glucose. Hermann Emil Fischer won the Nobel Prize in 1902. He mapped the structure of sugars and helped validate theories of chemical bonds. Otto Meyerhof won a prize in 1922 for studying glucose metabolism. In 1929, Hans von Euler-Chelpin and Arthur Harden won for studying sugar fermentation. In 1947, Bernardo Houssay and the duo Carl and Gerty Cori won for their work on glucose metabolism and glycogen. Finally, Luis Leloir won in 1970 for discovering how sugar nucleotides are used to build carbohydrates.
In commercial settings, glucose is often called dextrose. It is frequently manufactured from plant starches. In the United States and Japan, it comes from corn starch. In Europe, it is often made from potato or wheat starch. In tropical areas, it is made from tapioca starch. 

Glucose connects many different fields of science. In chemistry, it helps us understand organic structures and chemical kinetics. In biology, it is the center of energy metabolism and cellular function. In medicine, it is a critical tool for treating patients through intravenous solutions. Whether it is found in honey or used in a lab, glucose remains one of the most important substances on Earth.
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