Stem cells are biological cells found in all multicellular organisms that can divide and differentiate into diverse specialized cell types and can self-renew to produce more stem cells. There are two broad types of stem cells: embryonic stem cells which are isolated from the inner cell mass of blastocysts and adult stem cells which are found in various tissues in mammals. Stem cells and progenitor cells act as a repair system for the body, replenishing adult tissues in adult organisms.Stem cells can differentiate into all the specialized cells but also maintain the normal turnover of regenerative organs such as blood, skin or intestinal tissues in a developing embryo.Stem cells can now be artificially grown and transformed into specialized cell types with characteristics consistent with cells of various tissues such as muscles or nerves through cell culture. Examples are the zygote formed at egg fertilization and the first few cells that result from the division of the zygote.The ability to differentiate into almost all cell types. Examples include embryonic stem cells and cells that are derived from the mesoderm, endoderm and ectoderm germ layers that are formed in the beginning stages of embryonic stem cell differentiation. The ability to differentiate into a closely related family of cells. Examples include hematopoietic stem cells that can become red and white blood cells or platelets.The ability to only produce cells of their own type but have the property of self-renewal required to be labeled a stem cell. A stem cell must be able to produce new blood cells and immune cells over a long term, demonstrating potency. It should also be possible to isolate stem cells from the transplanted individual which can themselves be transplanted into another individual without HSCs, demonstrating that the stem cell was able to self-renew. Stem cells are either extracted from adult tissue or from a dividing zygote in a culture dish. Stem cells regularly divide to repair and replace worn out or damaged tissues In some organs. The pancreas and the heart, stem cells only divide under special conditions in other organs.Stem cells are important for living organisms for many reasons. Stem cells can regenerate themselves and or produce specialized cell types. This property makes stem cells appealing for scientists seeking to create medical treatments that are used for replacing lost or damaged cells. Stem cells differentiate when they leave that niche or no longer receive those signals. The signals that lead to reprogramming of cells to an embryonic-like state are also being investigated. Stem cells may remain quiescent for long periods of time until they are activated by a normal need for more cells to maintain tissues or by disease or tissue injury.

Stem cells have an important benefit for the pharmaceutical field. New drugs can be tested on stem cells to assess their safety before testing drugs on animal and human models. Stem cells can regenerate themselves and or produce specialized cell types. This property makes stem cells appealing for scientists seeking to create medical treatments that are used for replacing lost or damaged cells. It may eventually become possible to halt degenerative illness at an early stage and remove the need to think about replacement cells.Cancer and stem cells are both topical issues. These can include supporting cells of the connective tissue, blood vessels that supply the tumour with nutrients and immune cells that enter the tumour from the bloodstream and provide it with cell-signalling molecules and soluble factors.Stem cells constantly divide and produce new cells.Some new cells remain as stem cells and others go through a series of maturing stages before forming into mature blood cells.A stem cell transplant is an option which is considered for various cancer conditions. The higher doses of chemotherapy and radiotherapy that can be used in conjunction with a stem cell transplant can improve the chance of a cure for some conditions in certain circumstances.

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