Scientists look at tiny parts of life. 
Scientists study tiny parts of life. 

Histology is the study of tiny tissues. 

To see these parts, scientists must prepare them. First, they use a fixative. A fixative is a chemical that keeps the tissue from changing. It also makes the tissue hard. Next, they must remove water from the sample. This is called dehydration. They often use wax to hold the tissue. This is called embedding. 

Histology is the study of tiny tissues. 

To see tissues, scientists must follow many steps. First, they use a fixative to preserve the sample. A fixative is a chemical that keeps the structure the same. It also makes the tissue harder to cut. Next, they must remove water from the tissue. This step is called dehydration. They use alcohol to take the water out. Then, they use a clearing agent to prepare it for wax. 
Preparing the sample is a very careful process. After the tissue is in wax, it is ready for cutting. Scientists use a tool called a microtome. This machine has a sharp knife to make thin slices. For light microscopes, slices are 5 to 15 micrometers thick. For very powerful electron microscopes, they use an ultramicrotome. These slices are much thinner, between 50 and 150 nanometers. 
Because tissue is hard to see, scientists use stains. Staining adds color so parts stand out. One common way is using H&E stain. Hematoxylin turns the cell nuclei blue. Eosin turns the rest of the cell pink. Other stains can find specific things like iron. Some scientists even use antibodies to find proteins. This special way of staining is called immunohistochemistry. It helps doctors identify different types of cells very quickly.
Histology helps us understand how all living things work. Animals have four main tissue types. These are muscle, nervous, connective, and epithelial tissues. 
Histology is the scientific study of the microscopic anatomy of biological tissues. 
To observe tissues, scientists must follow a precise sequence of preparation steps. The first step is fixation, which uses chemical fixatives to preserve the structure of cells. Fixation also hardens the tissue, making it easier to cut into thin slices. For light microscopy, the most common fixative is 10% neutral buffered formalin (NBF). For electron microscopy, scientists often use glutaraldehyde, or sometimes osmium tetroxide. These chemicals work by cross-linking proteins, which maintains the structural integrity of the specimen. 
After fixation, the tissue must undergo embedding to provide support for cutting. Because most biological tissues contain water, they must first undergo dehydration. This involves transferring the sample through a series of increasingly concentrated ethanol baths to remove all water. Once dehydrated, a clearing agent like xylene is used to remove the alcohol. Finally, the tissue is infiltrated with a medium, most commonly paraffin wax. 
Once the tissue is embedded, it is ready for sectioning. This is the process of cutting the block into incredibly thin slices. For light microscopy, a machine called a microtome uses a sharp knife to cut sections between 5 and 15 micrometers thick. 
Because biological tissues have very little natural contrast, staining is required to make them visible. Staining adds color to highlight specific features of interest. One of the most common methods is the hematoxylin and eosin (H&E) stain. In this process, hematoxylin stains the cell nuclei blue, while eosin stains the cytoplasm and other areas pink. Other specialized techniques, known as histochemistry, target specific chemicals. For example, the Perls' Prussian blue reaction can identify iron deposits in the body. Advanced methods like immunohistochemistry use antibodies to visualize specific proteins or lipids.
Histology is categorized differently depending on whether the subject is an animal or a plant. All animal tissues fall into four principal types: muscle, nervous, connective, epithelial, and specialized subtypes. Interestingly, blood is classified as a connective tissue because its cells are suspended in a liquid called plasma. 
In the medical field, histology takes on a critical role through histopathology. This is the branch of histology that involves identifying and studying diseased tissues. Licensed pathologists examine these samples to provide accurate diagnoses for conditions like cancer. 
Beyond human medicine, histology reaches into many other scientific disciplines. In paleontology, the study of fossilized organisms is known as paleohistology. 
🖼️ Images & Media (10)
More to explore
✨ What else?
Related topics you might enjoy
🔬 Go deeper
More advanced topics to explore
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.