Cell cycle checkpointCell cycle checkpoints are control mechanisms in the eukaryotic cell cycle which ensure its proper progression. Each checkpoint serves as a potential termination point along the cell cycle, during which the conditions of the cell are assessed, with progression through the various phases of the cell cycle occurring only when favorable conditions are met. There are many checkpoints in the cell cycle, but the three major ones are: the G1 checkpoint, also known as the Start or restriction checkpoint or Major Checkpoint; the G2/M checkpoint; and the metaphase-to-anaphase transition, also known as the spindle checkpoint.
Cellule de SertoliLes cellules de Sertoli sont de grandes cellules somatiques de soutien qui constituent, avec les cellules germinales et les gamètes, un épithélium unistratifié qui tapisse la paroi des tubes séminifères du testicule chez les mammifères et les oiseaux. Lors de la différenciation des gonades, les cellules de Sertoli produisent l'hormone anti-müllerienne (AMH) qui permet la régression des canaux de Müller lors du développement embryologique.
Bacterial cell structureThe bacterium, despite its simplicity, contains a well-developed cell structure which is responsible for some of its unique biological structures and pathogenicity. Many structural features are unique to bacteria and are not found among archaea or eukaryotes. Because of the simplicity of bacteria relative to larger organisms and the ease with which they can be manipulated experimentally, the cell structure of bacteria has been well studied, revealing many biochemical principles that have been subsequently applied to other organisms.
Amniotic stem cellsAmniotic stem cells are the mixture of stem cells that can be obtained from the amniotic fluid as well as the amniotic membrane. They can develop into various tissue types including skin, cartilage, cardiac tissue, nerves, muscle, and bone. The cells also have potential medical applications, especially in organ regeneration. The stem cells are usually extracted from the amniotic sac by amniocentesis which occurs without harming the embryos.
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.
Chromosomevignette|400px|Description de la structure d'un chromosome. Un chromosome (du χρώμα, couleur et σώμα, corps, élément) est un élément microscopique constitué d'une molécule d'ADN et de protéines, les histones et les protéines non histones. Il porte les gènes, supports de l'information génétique, transmis des cellules mères aux cellules filles lors des divisions cellulaires. Dans les cellules eucaryotes, les chromosomes se trouvent dans le noyau.
Chromosome segregationChromosome segregation is the process in eukaryotes by which two sister chromatids formed as a consequence of DNA replication, or paired homologous chromosomes, separate from each other and migrate to opposite poles of the nucleus. This segregation process occurs during both mitosis and meiosis. Chromosome segregation also occurs in prokaryotes. However, in contrast to eukaryotic chromosome segregation, replication and segregation are not temporally separated. Instead segregation occurs progressively following replication.
Circular chromosomeA circular chromosome is a chromosome in bacteria, archaea, mitochondria, and chloroplasts, in the form of a molecule of circular DNA, unlike the linear chromosome of most eukaryotes. Most prokaryote chromosomes contain a circular DNA molecule – there are no free ends to the DNA. Free ends would otherwise create significant challenges to cells with respect to DNA replication and stability. Cells that do contain chromosomes with DNA ends, or telomeres (most eukaryotes), have acquired elaborate mechanisms to overcome these challenges.
Culture cellulaireLa culture cellulaire est un ensemble de techniques de biologie utilisées pour faire croître des cellules hors de leur organisme (ex-vivo) ou de leur milieu d'origine, dans un but d'expérimentation scientifique ou de fécondation in vitro. Les cellules mises en culture peuvent être: des micro-organismes libres (bactéries ou levures) des cellules « saines » prélevées fraîchement d'un organisme (biopsie...), on parle alors de « culture primaire ».
Cellule végétaleLes cellules végétales sont les unités élémentaires, très nombreuses, constituant les organismes végétaux. Elles comprennent généralement un noyau cellulaire entouré d'un cytoplasme, divers organites ou plastes, le tout étant protégé par une membrane plasmique. Elles peuvent mesurer entre . Les cellules végétales sont des systèmes vivants. Elles sont très différentes des cellules des organismes appartenant aux autres eucaryotes.