Focal adhesionIn cell biology, focal adhesions (also cell–matrix adhesions or FAs) are large macromolecular assemblies through which mechanical force and regulatory signals are transmitted between the extracellular matrix (ECM) and an interacting cell. More precisely, focal adhesions are the sub-cellular structures that mediate the regulatory effects (i.e., signaling events) of a cell in response to ECM adhesion. Focal adhesions serve as the mechanical linkages to the ECM, and as a biochemical signaling hub to concentrate and direct numerous signaling proteins at sites of integrin binding and clustering.
Protéine transmembranaireUne protéine est dite transmembranaire lorsqu’elle traverse au moins une fois entièrement la membrane cellulaire. Il existe donc trois environnements de composition différente en contact avec la protéine : le milieu extracellulaire, les lipides de la membrane, le cytosol. Chacun de ces trois environnements a une influence sur la structure de la protéine. Les acides aminés qui composent la partie transmembranaire sont hydrophobes tandis que les acides aminés qui composent les parties extracellulaire et intracytosolique sont hydrophiles.
Extracellular fluidIn cell biology, extracellular fluid (ECF) denotes all body fluid outside the cells of any multicellular organism. Total body water in healthy adults is about 60% (range 45 to 75%) of total body weight; women and the obese typically have a lower percentage than lean men. Extracellular fluid makes up about one-third of body fluid, the remaining two-thirds is intracellular fluid within cells. The main component of the extracellular fluid is the interstitial fluid that surrounds cells.
Extracellular spaceExtracellular space refers to the part of a multicellular organism outside the cells, usually taken to be outside the plasma membranes, and occupied by fluid. This is distinguished from intracellular space, which is inside the cells. The composition of the extracellular space includes metabolites, ions, proteins, and many other substances that might affect cellular function. For example, neurotransmitters "jump" from cell to cell to facilitate the transmission of an electric current in the nervous system.
Microscopie à sonde localeLa microscopie à sonde locale (MSL) ou microscopie en champ proche (MCP) ou scanning probe microscopy (SPM) en anglais est une technique de microscopie permettant de cartographier le relief (nano-topographie) ou une autre grandeur physique en balayant la surface à imager à l'aide d'une pointe très fine (la pointe est idéalement un cône se terminant par un seul atome). Le pouvoir de résolution obtenu par cette technique permet d'observer jusqu'à des atomes, ce qui est physiquement impossible avec un microscope optique, quel que soit son grossissement.