News

2 Adult stem cells are multipotent stem cells, which have less proliferative potential than pluripotent stem cells and can differentiate into some body cells but not all cell types. 3 This limited ...
Bone-marrow-derived multipotent progenitor stromal cells — or mesenchymal stem cells (MSCs) — are the common predecessors of cells of the mesenchymal lineage, such as bone, cartilage and fat ...
Jen has a PhD in human genetics from the University of California, Los Angeles where she is currently a project scientist. She enjoys teaching and communicating complex scientific concepts to a wide ...
Let us help you with your inquiries, brochures and pricing requirements Request A Quote Download PDF Copy Request A Quote Download PDF Copy Request A Quote Download ...
Techniques that cause multipotent adult mesenchymal stem cells (MSCs) to differentiate into cells of the chondrogenic lineage have led to a variety of experimental strategies to investigate ...
or ability to change into different kinds of cells. A one-week old embryo only contains multipotent stem cells, which can develop only in a certain direction. The tissues are finally made by these ...
Most organs maintain stem cells to repair damage, but the few neural progenitors ... into neural progenitor cells that generate multiple cell types. To identify such multipotent reprogramming factors, ...
Skin stem cells are multipotent adult stem cells present in the adult skin, which can self-renew and differentiate into different cell lineages of the skin. Skin stem cells are active during skin ...
Tissue stem cells are multipotent. This means that they can differentiate into any of the types of cell of the same tissue type. For example, blood stem cells found in bone marrow can ...
We have described the isolation of multipotent NC precursors from human PSCs using ... Inducing age-like features in nerve cells — When stem-cell-derived nerve cells exposed to progerin (shown in ...
Due to the presence of high shear and other stressors in the intestinal lumen, the epithelium undergoes rapid cellular turnover and regenerates continuously from multipotent intestinal stem cells ...