Log in Sign up
Back to Discover
🧬

Steroid hormone

life science Maturity 11-13

Your body makes special things.

1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg
These help you grow. They help you stay well. They also help you stay strong. They work inside your cells. Can you feel them working?
Steroidogenesis.svg
Steroidogenesis.svg

36 words

Your body makes special tools.

Steroidogenesis.svg
Steroidogenesis.svg
These tools are called hormones. They travel in your blood. They help you grow. They help you stay well. They also help you fight sickness.
1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg
These tools are made from fats. Because they are fats, they can pass through cell walls. They go inside cells to do their work. This helps your body stay in balance. These small tools are very important for you.

75 words

Your body uses special tools called steroid hormones.

Steroidogenesis.svg
Steroidogenesis.svg
These hormones help you stay well. They help with salt and water balance. They also help you grow.
1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg

Most steroid hormones come from cholesterol. Cholesterol is a type of fat. These hormones are also made of fats. This makes them fat-soluble. This means they can pass through cell membranes. A membrane is the thin wall around a cell.

Steroid hormones travel through your blood. They often ride on carrier proteins. These proteins help them move in the blood. To work, the hormone must free itself from the protein. This is called the free hormone hypothesis.

Once free, the hormone enters a cell. It can work in two ways. One way is a genomic pathway. This is a slow way to work. The hormone binds to a receptor. A receptor is a special part of the cell. The hormone then goes into the cell nucleus. There, it tells the cell to make new proteins. The other way is non-genomic. This way is much faster.

Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg

181 words

Steroid hormones are special messengers that help your body work correctly.

Steroidogenesis.svg
Steroidogenesis.svg
They control many important jobs like metabolism and immune functions. These hormones also manage salt and water balance in your body. They help with the development of sexual characteristics too. They even help you withstand injury or illness. Because they do so much, they are very important for staying healthy.
1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg

These hormones work in a very specific way. Most are made from a substance called cholesterol.

Steroidogenesis.svg
Steroidogenesis.svg
Because they are made of fat, they are fat-soluble. This means they can pass right through the thin walls of a cell. Once inside, they find a specific receptor to bind to. This binding causes changes inside the cell. Some hormones travel through the blood by riding on carrier proteins.
Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg

Scientists have studied how these messengers travel and work. One idea is called the free hormone hypothesis. It says hormones only affect cells when they are not stuck to a protein. To work, they must free themselves from these blood proteins. They can then cross the cell membrane to find a receptor. Some research shows cells can even swallow these hormone-protein groups through endocytosis.

Endocytosis of Steroid Hormones.jpg
Endocytosis of Steroid Hormones.jpg

There are different groups of these hormones. Corticosteroids are one group, and they are usually made in the adrenal cortex. Sex steroids are another group made in the gonads or placenta. There are five main types based on the receptors they use. These include glucocorticoids, mineralocorticoids, androgens, estrogens, and progestogens. Vitamin D derivatives are a sixth related system.

Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg

Steroid hormones can act in two different ways. The first is the genomic pathway, which is quite slow. In this way, the hormone enters the nucleus to change how proteins are made. The second is the non-genomic pathway. This way is much faster for the cell. It happens through receptors found on the outside of the cell membrane. These pathways help your body react to different needs quickly.

1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg

341 words

Steroid hormones are essential chemical messengers that regulate many vital biological processes. These molecules act as signals that tell cells how to behave and respond to the environment. They help control metabolism, which is how the body uses energy. They also manage inflammation, immune functions, and the balance of salt and water in the body. Additionally, they influence the development of sexual characteristics and the ability to withstand injury or illness. Because they perform so many different roles, they are critical for maintaining health.

Steroidogenesis.svg
Steroidogenesis.svg

These hormones are categorized into two primary classes based on where they are produced. The first class is corticosteroids, which are typically made in the adrenal cortex. The second class is sex steroids, which are usually produced in the gonads or the placenta. Within these classes, there are five specific types defined by the receptors they bind to. These five types are glucocorticoids, mineralocorticoids, androgens, estrogens, and progestogens. A sixth related system exists through Vitamin D derivatives, which use similar receptors.

Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg

Naturally occurring steroid hormones are synthesized from cholesterol. This process happens within the gonads and the adrenal glands. Because they are derived from cholesterol, these hormones are lipids, or fats. This lipid nature is very important for how they move through the body. Being fat-soluble allows them to pass directly through the cell membrane. Once inside, they bind to specific steroid hormone receptors to trigger changes. These receptors can be located in the cytoplasm or inside the cell nucleus.

Steroidogenesis.svg
Steroidogenesis.svg

To move through the bloodstream, steroid hormones use carrier proteins. The blood is mostly water, and these hormones do not dissolve well in it. Proteins like sex hormone-binding globulin, corticosteroid-binding globulin, and albumin act as vehicles. They bind to the hormones to increase their solubility in the blood. This is explained by the free hormone hypothesis. This theory suggests that hormones only affect cells when they are not bound to these proteins. To become active, the hormone must break free from its carrier protein.

Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg

There are different ways these hormone-protein complexes enter a target cell. One possible method is a process called endocytosis. In this pathway, a membrane receptor called megalin binds to the hormone-carrier complex. The cell then pulls the entire complex inside itself. Once inside, the complex may go to the lysosome. The lysosome breaks down the carrier protein, which releases the hormone into the cytoplasm. This allows the hormone to follow its intended pathway of action.

Endocytosis of Steroid Hormones.jpg
Endocytosis of Steroid Hormones.jpg

Steroid hormones affect cells through two main types of pathways. The first is the genomic pathway, which is a relatively slow process. In this pathway, the free hormone passes through the cell membrane and enters the cytoplasm. It may undergo changes like reduction, hydroxylation, or aromatization through enzymes. The hormone then binds to a nuclear receptor, which is a large metalloprotein. The receptor subunits join together, a process called dimerization, to form a unit that binds to DNA. This binding induces the transcription of specific target genes.

1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg

The second type is the non-genomic pathway, which is much faster than the genomic version. These pathways are mediated by receptors located on the plasma membrane rather than inside the cell. Steroid hormones can affect ion channels, transporters, and membrane fluidity through these methods. The most common mechanism in this category involves G-protein coupled receptors, or GPCRs. While genomic pathways change how proteins are made over time, non-genomic pathways allow for rapid cellular responses.

1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg

Humans also use synthetic steroids, which are man-made versions of these molecules. Some synthetic steroids are designed to be stronger or weaker than the natural versions. They can be used as medications to duplicate the action of natural hormones. For example, glucocorticoids like prednisone or dexamethasone are used in medicine. Other examples include the androgen oxandrolone or the estrogen ethinyl estradiol. Some molecules are even designed as antagonists, which work to block the action of certain hormones.

Steroidogenesis.svg
Steroidogenesis.svg

666 words
🖼️ Images & Media (4)
File:Steroidogenesis.svg
Steroidogenesis.svg
File:Free Hormone Hypothesis 2.jpg
Free Hormone Hypothesis 2.jpg
File:Endocytosis of Steroid Hormones.jpg
Endocytosis of Steroid Hormones.jpg
File:1803 Binding of Lipid-Soluble Hormones.jpg
1803 Binding of Lipid-Soluble Hormones.jpg
Up Next
🧬
Steroid
Life Science
More to explore

What else?

Related topics you might enjoy

🔬 Go deeper

More advanced topics to explore

🪜 Step back

Simpler topics to build understanding

What is Nepedia?

A free, ad-free encyclopedia for children. Every article is written at five reading levels, so the same page works for a five-year-old and a fifteen-year-old — use the level switcher above to see this one change. No account needed to read.