Cellule souche neuraleLes cellules souches neurales sont des cellules souches - multipotentes et capables de s'auto-renouveler - dont le potentiel de différenciation est restreint aux types cellulaires neuraux, notamment : Neurone, Astrocyte et Oligodendrocyte. Durant l'embryogenèse, ces cellules souches neurales sont situées dans la zone ventriculaire du tube neural. Elles génèrent l'ensemble des types cellulaires nécessaires au système nerveux central (à l'exception de la microglie), par un processus appelé neurogenèse.
Stem-cell nicheStem-cell niche refers to a microenvironment, within the specific anatomic location where stem cells are found, which interacts with stem cells to regulate cell fate. The word 'niche' can be in reference to the in vivo or in vitro stem-cell microenvironment. During embryonic development, various niche factors act on embryonic stem cells to alter gene expression, and induce their proliferation or differentiation for the development of the fetus.
Subgranular zoneThe subgranular zone (SGZ) is a brain region in the hippocampus where adult neurogenesis occurs. The other major site of adult neurogenesis is the subventricular zone (SVZ) in the brain. The subgranular zone is a narrow layer of cells located between the granule cell layer and hilus of the dentate gyrus. This layer is characterized by several types of cells, the most prominent type being neural stem cells (NSCs) in various stages of development.
Zone sous-ventriculaireThe subventricular zone (SVZ) is a region situated on the outside wall of each lateral ventricle of the vertebrate brain. It is present in both the embryonic and adult brain. In embryonic life, the SVZ refers to a secondary proliferative zone containing neural progenitor cells, which divide to produce neurons in the process of neurogenesis. The primary neural stem cells of the brain and spinal cord, termed radial glial cells, instead reside in the ventricular zone (VZ) (so-called because the VZ lines the inside of the developing ventricles).
Cellule souchevignette|Cellules souches embryonnaires de souris en culture. En biologie cellulaire, une cellule souche est une cellule indifférenciée capable, à la fois, de générer des cellules spécialisées par différenciation cellulaire et de se maintenir dans l'organisme par division symétrique ou division asymétrique. Les cellules souches sont présentes chez tous les êtres vivants multicellulaires. Elles jouent un rôle central dans le développement des organismes ainsi que dans le maintien de leur intégrité au cours de la vie.
NeurogenèseLa neurogenèse désigne l'ensemble du processus de formation d'un neurone fonctionnel du système nerveux à partir d'une cellule souche neurale. Elle a principalement lieu lors du développement neuronal du cerveau chez l'embryon et l'enfant (« neurogenèse primaire »). Certaines structures cérébrales des mammifères continuent cependant à produire des neurones chez l'individu adulte (). Issues du neuroectoderme, provenant lui-même de l'ectoderme, ces cellules migrent pendant la formation des structures du système nerveux central (tube neural puis vésicules cérébrales primitives : prosencéphale, mésencéphale et rhombencéphale).
Adult stem cellAdult stem cells are undifferentiated cells, found throughout the body after development, that multiply by cell division to replenish dying cells and regenerate damaged tissues. Also known as somatic stem cells (from Greek σωματικóς, meaning of the body), they can be found in juvenile, adult animals, and humans, unlike embryonic stem cells. Scientific interest in adult stem cells is centered around two main characteristics.
Cell potencyCell potency is a cell's ability to differentiate into other cell types. The more cell types a cell can differentiate into, the greater its potency. Potency is also described as the gene activation potential within a cell, which like a continuum, begins with totipotency to designate a cell with the most differentiation potential, pluripotency, multipotency, oligopotency, and finally unipotency. Totipotency (Lat. totipotentia, "ability for all [things]") is the ability of a single cell to divide and produce all of the differentiated cells in an organism.
Rostral migratory streamThe rostral migratory stream (RMS) is a specialized migratory route found in the brain of some animals along which neuronal precursors that originated in the subventricular zone (SVZ) of the brain migrate to reach the main olfactory bulb (OB). The importance of the RMS lies in its ability to refine and even change an animal's sensitivity to smells, which explains its importance and larger size in the rodent brain as compared to the human brain, as our olfactory sense is not as developed.
Stem-cell lineA stem cell line is a group of stem cells that is cultured in vitro and can be propagated indefinitely. Stem cell lines are derived from either animal or human tissues and come from one of three sources: embryonic stem cells, adult stem cells, or induced stem cells. They are commonly used in research and regenerative medicine. Stem cell By definition, stem cells possess two properties: (1) they can self-renew, which means that they can divide indefinitely while remaining in an undifferentiated state; and (2) they are pluripotent or multipotent, which means that they can differentiate to form specialized cell types.