نتایج جستجو برای: feeder cells

تعداد نتایج: 1387280  

2013
Rong Zhang Heidi K. Mjoseng Marieke A. Hoeve Nina G. Bauer Steve Pells Rut Besseling Srinivas Velugotla Guilhem Tourniaire Ria E. B. Kishen Yanina Tsenkina Chris Armit Cairnan R. E. Duffy Martina Helfen Frank Edenhofer Paul A. de Sousa Mark Bradley

Cultures of human embryonic stem cell typically rely on protein matrices or feeder cells to support attachment and growth, while mechanical, enzymatic or chemical cell dissociation methods are used for cellular passaging. However, these methods are ill defined, thus introducing variability into the system, and may damage cells. They also exert selective pressures favouring cell aneuploidy and l...

Journal: :Genetics and molecular research : GMR 2012
F L Dong H A Kaleri Y D Lu C L Song B C Jiang B L Zhang L J Wang X G Wang X S Ma B J Wu H Song J Li H L Liu

Typically, production of induced pluripotent stem cells requires direct contact with feeder cells. However, once the stem cells have reached the appropriate maturation point, it is difficult to separate them from feeder cells, which must be irradiated with γ-rays or treated with the antibiotic mitomycin-C. We used a microporous poly-membrane-based indirect contact co-culture system with m...

2014
Marek Molcanyi Narges Zare Mehrjardi Ute Schäfer Nadia Nabil Haj-Yasein Michael Brockmann Marina Penner Peter Riess Clemens Reinshagen Bernhard Rieger Tobias Hannes Jürgen Hescheler Bert Bosche

Stem cells have been demonstrated to possess a therapeutic potential in experimental models of various central nervous system disorders, including stroke. The types of implanted cells appear to play a crucial role. Previously, groups of the stem cell network NRW implemented a feeder-based cell line within the scope of their projects, examining the implantation of stem cells after ischemic strok...

2011
Junying Yu Kevin Fongching Chau Maxim A. Vodyanik Jinlan Jiang Yong Jiang

Genetic reprogramming of human somatic cells to induced pluripotent stem cells (iPSCs) could offer replenishable cell sources for transplantation therapies. To fulfill their promises, human iPSCs will ideally be free of exogenous DNA (footprint-free), and be derived and cultured in chemically defined media free of feeder cells. Currently, methods are available to enable efficient derivation of ...

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