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SCM012 NDiff Neuro-2 Medium Supplement (200x)

SCM012
5 mL  
Purchase on Sigma-Aldrich

概述

Replacement Information

重要规格表

Key Applications
CULT, Cult
Description
Catalogue NumberSCM012
Brand Family Chemicon®
Trade Name
  • Chemicon
DescriptionNDiff Neuro-2 Medium Supplement (200x)
OverviewOriginally developed in Professor Austin Smith's laboratory, NDiff™ Neuro-2 Medium Supplement is a serum-free, N2-like supplement for the in vitro differentiation of murine embryonic stem (ES) cells into post-mitotic neurons particularly via monolayer differentiation. This product may also be used in the derivation, propagation and maintenance of mouse NS neural stem cells.
References
Product Information
Formulation
Quality LevelMQ100
Applications
ApplicationNDiff Neuro-2 Medium Supplement is a serum-free, N2-like supplement for the in vitro differentiation of murine embryonic stem (ES) cells into post-mitotic neurons particularly via monolayer differentiation.
Key Applications
  • Cell Culture
  • Stem Cell Culture
Biological Information
Media FormLiquid
Stem Cell Type
  • Neural Stem Cells
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Usage Statement
  • Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
Storage and Shipping Information
Storage ConditionsMaintain at -20 °C until expiration date. Protect from light. Once thawed, aliquot unused portion into smaller volumes and store at -20 °C until future use. Once added to the cell culture medium, the product is stable at 4 °C for four weeks.
Packaging Information
Material Size5 mL
Transport Information
Supplemental Information
Specifications
Global Trade Item Number
产品目录编号 GTIN
SCM012 04053252268397

Documentation

NDiff Neuro-2 Medium Supplement (200x) MSDS

职位

物料安全数据表 (MSDS) 

参考

参考概述应用公共医疗ID
Systematic delineation of optimal cytokine concentrations to expand hematopoietic stem/progenitor cells in co-culture with mesenchymal stem cells.
Andrade, Pedro Z, et al.
Mol Biosyst, 6: 1207-15 (2010)  2010

显示摘要
20424784 20424784
Dynamic cell-cell interactions between cord blood haematopoietic progenitors and the cellular niche are essential for the expansion of CD34+, CD34+CD38- and early lymphoid CD7+ cells.
da Silva, Cláudia Lobato, et al.
J Tissue Eng Regen Med, 4: 149-58 (2010)  2010

显示摘要
19937912 19937912
Optimization and integration of expansion and neural commitment of mouse embryonic stem cells.
Diogo, Maria Margarida, et al.
Biotechnol. Appl. Biochem., 49: 105-12 (2008)  2008

显示摘要
17596123 17596123
Adherent neural stem (NS) cells from fetal and adult forebrain
Pollard, Steven M, et al
Cereb Cortex, 16 Suppl 1:i112-20 (2006)  2006

Cell Culture16766697 16766697
Neural stem cell systems: diversities and properties after transplantation in animal models of diseases
Conti, Luciano, et al
Brain Pathol, 16:143-54 (2006)  2006

Cell Culture16768755 16768755
Derivation and propagation of embryonic stem cells in serum- and feeder-free culture
Nichols, Jennifer and Ying, Qi-Long
Methods Mol Biol, 329:91-8 (2006)  2006

Cell Culture16845986 16845986
Niche-independent symmetrical self-renewal of a mammalian tissue stem cell.
Conti, Luciano, et al.
PLoS Biol., 3: e283 (2005)  2005

显示摘要
Cell Culture16086633 16086633
Conversion of embryonic stem cells into neuroectodermal precursors in adherent monoculture
Ying, Qi-Long, et al
Nat Biotechnol, 21:183-6 (2003)  2003

Cell Culture12524553 12524553
Defined conditions for neural commitment and differentiation
Ying, Qi-Long and Smith, Austin G
Meth Enzymol, 365:327-41 (2003)  2003

Cell Culture14696356 14696356

数据表

标题
NDiff™ NEURO-2 MEDIUM SUPPLEMENT (200X)
Reprogramming Cell Fate and Function Novel Strategies for iPSC Generation, Characterization, and Differentiation