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Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells

Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells

Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells

Product catalog summary
Overview: The Cellartis 2i mES/iPSC Culture Medium is a serum-free, defined medium designed for the establishment and maintenance of mouse embryonic stem (ES) and induced pluripotent stem (iPS) cell lines. It utilizes two selective small molecule inhibitors, CHIR99021 and PD0325901, to block differentiation signals from GSK3β and ERK/MEK, promoting cell proliferation and maintaining pluripotency.
Applications: This medium is suitable for establishing mouse ES and iPS cell lines, maintaining pure ES or iPS cells over the long term, and converting partial- or pre-iPS cells into fully pluripotent cells when combined with Leukemia Inhibitory Factor (LIF).
Components: The product includes one bottle (200 ml) of Cellartis mES/iPSC Culture Basal Medium and one tube (200 µl) of Cellartis 2i mES/iPSC Supplement.
References: The document cites several studies supporting the use of this medium in pluripotent stem cell research, including works by Malaver-Ortega et al., Nichols et al., and Silva et al.
Additional Information: For detailed storage conditions, product components, and technical specifications, users are advised to consult the product's Certificate of Analysis and Kit Components List available under the Documents tab on the Takara Bio website.
Usage Note: The product is intended for research use only and is not suitable for diagnostic procedures.
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Catalog excerpts

Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells-1

Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells Cellartis 2i mES/iPSC Culture Medium is a serum-free, defined cell culture medium for the establishment of mouse ES and iPS cell lines. This medium contains two selective small molecule inhibitors (2i technology: CHIR99021 and PD0325901) that act to eliminate differentiation-inducing signals from GSK3β and ERK/MEK, respectively, and promote cell proliferation.  More Cellartis® 2i mES/iPSC Culture Medium Cellartis 2i mES/iPSC Culture Medium is a serum-free, defined cell culture medium for the establishment of mouse ES and iPS cell lines. This medium contains two selective small molecule inhibitors ('2i'), CHIR99021 and PD0325901, that act to eliminate differentiation-inducing signals from GSK3β and ERK/MEK, respectively, and promote cell proliferation. Image Data Overview Completely defined, serum-free formulation promotes cell proliferation and maintains pluripotent state Uses selective small molecule inhibitors to block differentiation signals from GSK3β and ERK/MEK, allowing establishment and long-term maintenance of germline-competent mouse ES and iPS cells Can be combined with Leukemia Inhibitory Factor (LIF) to induce the efficient conversion of partial- or pre-iPS mouse cells into fully pluripotent iPS cells More Information Applications Establishment of mouse ES and iPS cell lines Long-term maintenance of pure ES or iPS cells Conversion of partial- or pre-iPS cells into fully pluripotent cells in the presence of LIF Components 1 bottle (200 ml) of Cellartis mES/iPSC Culture Basal Medium 1 tube (200 µl) Cellartis 2i mES/iPSC Su

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Cellartis 2i mES/iPSC Culture Medium: maintenance of germlinecompetent mouse ES and iPS cells-2

Malaver-Ortega, L. F. et al. The state of the art for pluripotent stem cells derivation in domestic ungulates. Theriogenology 78, 1749–1762 (2012). Nichols, J. et al. Validated germline-competent embryonic stem cell lines from non-obese diabetic mice. Nat. Med. 15, 814–818 (2009). Silva, J. et al. Promotion of reprogramming to ground state pluripotency by signal inhibition. PLoS Biol. 6, e253 (2008). Silva, J. et al. Nanog is the gateway to the pluripotent ground state. Cell 138, 722–37 (2009). Wang, W. et al. Rapid and efficient reprogramming of somatic cells to induced pluripotent stem cells...

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