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Salivary gland

life science Maturity 7-9

Your mouth makes spit.

chronic sialadenitis.jpg
chronic sialadenitis.jpg
It helps you eat. It also keeps your teeth safe. It helps you taste food. It is very helpful! Can you feel your spit?

30 words

Your mouth makes spit.

chronic sialadenitis.jpg
chronic sialadenitis.jpg
It helps you eat. It also keeps your teeth safe. It helps you taste food. It is very helpful!

Three main groups of glands make most spit. One group is near your ears. One group is under your jaw. One group is under your tongue.

Some spit is thin and watery. This helps break down food. Other spit is thick and slimy. This helps things slide down easily.

Small glands are all over your mouth. They coat the inside of your mouth. This keeps everything wet.

You make a lot of spit every day. It keeps your mouth healthy. It is a very busy job!

111 words

Your body has many glands that make saliva. Saliva is the liquid in your mouth. It helps you chew and swallow food. It also keeps your teeth healthy.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Humans have three main pairs of large glands. The parotid glands are the largest. They sit near your ears. They make a thin liquid. This liquid has an enzyme called alpha-amylase. This enzyme breaks down starch in food. The submandibular glands are under your jaw. They make about 70% of your saliva. This liquid is a mix of thin fluid and thick mucus. The sublingual glands are under your tongue. They make mostly thick mucus. This helps things slide easily.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

You also have hundreds of tiny minor glands. They are spread all over your mouth. They make a thin coat of saliva. This keeps your mouth wet. Every day, you make 1200 to 1500 milliliters of saliva. This is a lot of liquid! Saliva also fights germs. It has proteins that can break down bacteria. This keeps your mouth safe and clean.

174 words

Your body uses special parts called salivary glands to make saliva. These are exocrine glands, which means they use tiny paths called ducts to send liquid to a surface. Saliva is very important for your health and helps you eat. It protects the soft parts of your mouth and keeps your teeth strong. Every day, humans produce between 1200 and 1500 milliliters of this liquid.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Saliva works in a few different ways to help you. Some glands make a thin liquid called a serous secretion. This liquid contains a protein called alpha-amylase, which is an enzyme that breaks down starch into sugars. Other glands make a thick liquid called mucous secretion. This contains mucin, which acts as a lubricant to help food slide easily. Most of your saliva is a mix of both types.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Humans have three main pairs of large glands. The parotid glands are the largest and sit near your ears. They produce 25% of your saliva and help you chew and swallow. The submandibular glands are under your lower jaw. They are smaller than the parotid glands but make about 70% of your saliva. The sublingual glands sit under your tongue. They make about 5% of your saliva and use many tiny ducts to release it.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Scientists are always learning new things about these glands. In September 2020, a group of Dutch scientists found something new. They used a special scan called a PET-CT to see a fourth pair of glands. They called them the tubarial glands because they sit near the torus tubarius. These glands might explain why some people have a very dry mouth after medical treatments. However, other scientists are still studying this to see if it is true.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Your nervous system tells your glands when to work. The parasympathetic system sends a signal that creates a large flow of saliva. This happens when a chemical called acetylcholine binds to receptors in the glands. Your sympathetic system also helps, but it changes what the saliva is made of. Saliva also helps your teeth stay healthy by forming a thin film called a pellicle. This film uses minerals like calcium to help repair your tooth enamel.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

371 words

Salivary glands are essential exocrine glands in many vertebrates, including humans. An exocrine gland is a part of the body that uses a system of ducts to release substances onto a surface. In humans, these glands produce saliva, a liquid that is vital for oral health and digestion. Every day, the human body produces between 1200 and 1500 milliliters of saliva. This liquid performs many roles, such as lubricating food and protecting the mouth.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

The production of saliva involves complex biological mechanisms. Salivation is often mediated by parasympathetic stimulation from the autonomic nervous system. During this process, a neurotransmitter called acetylcholine binds to muscarinic receptors within the glands. This binding triggers an increase in saliva production. The sympathetic nervous system also plays a role by releasing norepinephrine. This chemical acts on β1-adrenergic receptors to increase levels of cyclic adenosine monophosphate, or cAMP. This process also leads to more saliva secretion, though the composition of the liquid may change.

Salivary glands are classified by the type of secretion they produce. Some are serous glands, which secrete a thin fluid. This fluid contains alpha-amylase, an enzyme that breaks down starch into maltose and glucose. Other glands are mucous glands, which produce a thick secretion containing mucin. Mucin acts as a lubricant to help food move through the mouth. Many glands are actually seromucous, meaning they produce a mixed secretion of both types. On a microscopic level, these secretions are made in groups of cells called acini. Each acinus consists of a single layer of cuboidal epithelial cells surrounding a central opening called a lumen.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Humans possess three main pairs of major salivary glands. The parotid glands are the largest of these glands. They are located behind the mandibular ramus and in front of the mastoid process. These glands produce about 25% of the total salivary content and secrete amylase to begin starch digestion. The submandibular glands are located beneath the lower jaws. Although they are smaller than the parotid glands, they produce around 70% of the saliva in the oral cavity. The sublingual glands sit inferior to the tongue. They are considered mixed glands and provide about 5% of the saliva. They use 8 to 20 tiny excretory ducts known as Rivinus ducts to release their fluid.

In addition to these major glands, there are hundreds of minor salivary glands. These are located throughout the oral cavity in the submucosa, which is the layer of tissue under the mucous membrane. There are between 800 and 1,000 minor glands, and they are only 1 to 2 mm in diameter. They are mainly mucous in nature and help coat the oral cavity. Scientists also study specialized structures like Von Ebner's glands. These are found on the dorsal surface of the tongue near the circumvallate papillae. They secrete a purely serous fluid that helps with the perception of taste by dissolving food particles.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

Recent scientific discoveries have added new layers to our understanding of these structures. In September 2020, a group of Dutch scientists identified a possible fourth pair of major salivary glands. They named these the tubarial glands because they are positioned near the torus tubarius in the nasopharynx. The researchers used a specialized scan called a PET-CT to find them. This discovery might explain why some patients experience xerostomia, or dry mouth, after radiotherapy. However, this finding is still being debated. Some scientists believe these might actually be an accumulation of minor salivary glands rather than a new major pair.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

The functions of saliva extend far beyond simple lubrication. Saliva helps protect teeth by forming a pellicle, which is a thin film on the tooth surface. This film contains proteins like statherin and proline-rich glycoproteins. These proteins help prevent demineralization and promote remineralization by attracting calcium ions to the enamel. Saliva also has antimicrobial actions. For example, the protein lactoferrin binds to iron, which can break down bacterial cell walls. Other peptides, such as histatins, help inhibit the growth of certain microbes. By buffering the mouth and managing microbes, these glands maintain the integrity of the entire oral system.

chronic sialadenitis.jpg
chronic sialadenitis.jpg

686 words
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File:chronic sialadenitis.jpg
chronic sialadenitis.jpg
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