Stem cell controversyThe stem cell controversy is the consideration of the ethics of research involving the development and use of human embryos. Most commonly, this controversy focuses on embryonic stem cells. Not all stem cell research involves human embryos. For example, adult stem cells, amniotic stem cells, and induced pluripotent stem cells do not involve creating, using, or destroying human embryos, and thus are minimally, if at all, controversial.
Genetically modified mouseA genetically modified mouse or genetically engineered mouse model (GEMM) is a mouse (Mus musculus) that has had its genome altered through the use of genetic engineering techniques. Genetically modified mice are commonly used for research or as animal models of human diseases, and are also used for research on genes. Together with patient-derived xenografts (PDXs), GEMMs are the most common in vivo models in cancer research. Both approaches are considered complementary and may be used to recapitulate different aspects of disease.
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.
Expression génétiqueL'expression des gènes, encore appelée expression génique ou expression génétique, désigne l'ensemble des processus biochimiques par lesquels l'information héréditaire stockée dans un gène est lue pour aboutir à la fabrication de molécules qui auront un rôle actif dans le fonctionnement cellulaire, comme les protéines ou les ARN. Même si toutes les cellules d'un organisme partagent le même génome, certains gènes ne sont exprimés que dans certaines cellules, à certaines périodes de la vie de l'organisme ou sous certaines conditions.
Genetically modified plantGenetically modified plants have been engineered for scientific research, to create new colours in plants, deliver vaccines, and to create enhanced crops. Plant genomes can be engineered by physical methods or by use of Agrobacterium for the delivery of sequences hosted in T-DNA binary vectors. Many plant cells are pluripotent, meaning that a single cell from a mature plant can be harvested and then under the right conditions form a new plant.
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.
Cellule mésenchymateuseLes cellules mésenchymateuses sont des cellules souches, stromales et multipotentes. Elles sont présentes dans le mésenchyme de l'embryon, dans le sang de cordon ombilical et plus encore dans la gelée de Wharton (qui entoure le cordon). Elles sont aussi présentes chez l'adulte, mais en très faibles quantités. Depuis la fin des années 1990, la démonstration de la capacité unique des cellules souches (SC) à s'auto-renouveler a suscité d'importants espoirs d'usages thérapeutiques nouveaux.
Clonage thérapeutiqueLe clonage thérapeutique, ou clonage à visée thérapeutique est un transfert de noyau de cellules somatiques dans des cellules énuclées, en vue de produire des cellules-souches destinées à se différencier lors d'une phase de culture in vitro et assurer le remplacement de matériel vivant disponible par exemple pour des greffes. La compatibilité avec le malade est garantie par la parenté génétique assurée par ce clonage non-reproductif.
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.
Aliment génétiquement modifiéGenetically modified foods (GM foods), also known as genetically engineered foods (GE foods), or bioengineered foods are foods produced from organisms that have had changes introduced into their DNA using various methods of genetic engineering. Genetic engineering techniques allow for the introduction of new traits as well as greater control over traits when compared to previous methods, such as selective breeding and mutation breeding.