27.1
The extracellular matrix, or ECM, is an interconnected network composed of fibers and ground substance, which is mostly interstitial fluid that fills the space between the cells, connective tissue fibers, and capillaries.
The molecular makeup of each microenvironment is secreted by local cells, ranging from fibroblasts to macrophages, resulting in differences in the exact composition and physical properties.
For instance, matrices are filled with polymerized glycosaminoglycans or GAGs for short. They bind water and other proteins, forming proteoglycans. The most common, chondroitin sulfates, are vital to cartilage and bones, and their gradual loss leads to osteoarthritis.
Another protein called elastin contributes to stretchiness, allowing muscles and skin to be flexible, whereas rigidity is provided by long, thick, fibrous glycoproteins called collagens. While ubiquitous, they're especially important to strong and extremely tough tissues like tendons, which join muscles to bones.
The glue is fibronectin, a cell adhesion protein that allows cells to attach to the different matrix elements, including collagen, GAGs, and integrins, membrane proteins that connect cells to the environment and play an important role in signaling cascades.
In order to maintain tissue organization, many animal cells are surrounded by structural molecules that make up the extracellular matrix (ECM…
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