Ling-Ting Huang, Matthew J Paszek
For generations of biology students, the fundamental model of the cell membrane was defined by the fluid mosaic model: a fluid and dynamic phospholipid bilayer studded with various integral and peripheral proteins. While elegant, this well-known picture of the cell membrane omits a crucial component: a dense, carbohydrate-rich coating that covers most eukaryotic cells. This structure, known as the glycocalyx, forms the true outer interface between cells and their environment. The glycocalyx is not simply a decorative sugar coating. It participates in cell signaling, mechanical protection, immune recognition, host-pathogen interactions, and the regulation of vascular function. The glycocalyx is present on all cells in our body, but its thickness and composition vary enormously amongst cell types. On many cells, the glycocalyx is only tens of nanometers deep, whereas on specialized surfaces, it can be much more substantial. For instance, the glycocalyx of the vascular endothelium can reach hundreds of nanometers to several micrometers in thickness, forming a dynamic molecular forest that projects outward from the membrane.