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Cxy_iGEM_13-6
Cxy_iGEM_13-6

... same cell, cells were treated with cephalexin, a drug which inhibits septation and causes cells to grow into long filaments. Eleven cells ranging in length from 7.5 to 11 mm were selected, and laser pulses were applied alternately at the cell pole and the cell center until GFP was completely photobl ...
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fabienneagasse@yahoo.fr
[email protected]

... neuroscience and cellular biology (CNC) of Coimbra, I have developed, since October 2005, a new thematic of research on stem cells, derived from the subventricular zone of mice, and brain repair. During the first year of my postdoc, Dr. Bernardino, Dr. Malva and I developed a technique allowing the ...
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Tissue engineering



Tissue engineering is the use of a combination of cells, engineering and materials methods, and suitable biochemical and physicochemical factors to improve or replace biological functions. While it was once categorized as a sub-field of biomaterials, having grown in scope and importance it can be considered as a field in its own right.While most definitions of tissue engineering cover a broad range of applications, in practice the term is closely associated with applications that repair or replace portions of or whole tissues (i.e., bone, cartilage, blood vessels, bladder, skin, muscle etc.). Often, the tissues involved require certain mechanical and structural properties for proper functioning. The term has also been applied to efforts to perform specific biochemical functions using cells within an artificially-created support system (e.g. an artificial pancreas, or a bio artificial liver). The term regenerative medicine is often used synonymously with tissue engineering, although those involved in regenerative medicine place more emphasis on the use of stem cells or progenitor cells to produce tissues.
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