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SF001-500P
Sigma-AldrichESGRO Complete PLUS Clonal Grade Medium, 500ml
The ESGRO Complete PLUS Clonal Grade Medium is a defined serum-free medium provided with a selective GSK3β inhibitor to enhance viability of mouse embryonic stem cells & increased maintenance of pluripotency in the absence of serum & feeder cells.
More>>The ESGRO Complete PLUS Clonal Grade Medium is a defined serum-free medium provided with a selective GSK3β inhibitor to enhance viability of mouse embryonic stem cells & increased maintenance of pluripotency in the absence of serum & feeder cells. Less<<
SDB (Sicherheitsdatenblätter), Analysenzertifikate und Qualitätszertifikate, Dossiers, Broschüren und andere verfügbare Dokumente.
ESGRO Complete PLUS Clonal Grade Medium is a defined serum-free medium provided with a selective GSK3β inhibitor to enhance viability of mouse embryonic stem (ES) cells and increased maintenance of pluripotency in the absence of serum and feeder cells. This medium is intended for mouse ES cell expansion and growth at clonal density in serum-free conditions. The mouse ES cells should maintain germ line competency.
References
Product Information
Components
1. ESGRO Complete Clonal Grade Medium: (Catalogue No. SF001-B) One (1) 500 mL bottle containing original clonal grade medium. Complete formulation containing self-renewal factors, no need to add LIF. pH 7.1-7.3
The ESGRO Complete PLUS Clonal Grade Medium is a defined serum-free medium provided with a selective GSK3β inhibitor to enhance viability of mouse embryonic stem cells & increased maintenance of pluripotency in the absence of serum & feeder cells.
Key Applications
Stem Cell Culture
Application Notes
Suitable for ES cell derivation, transfection and selection, in addition to general cell passaging and growth. Media can be used on feeder dependent/independent ES cell lines.
Important passaging information Use of one of the below listed cell dissociation solutions is imperative while passaging ES cells using ESGRO Complete products. Standard trypsin protocols used to passage ES cells grown in serum containing media typically result in over trypsinization causing the cells to lift off the plates and form abnormal ball-like structures. Recommended products include: ESGRO Complete™ Accutase (Cat # SF006) ESGRO Complete™ Trypsin Solution (proprietary) (Cat # SF007) ESGRO Complete™ Enzyme-Free Dissociation Solution (proprietary) (Cat # SF009)
Biological Information
Media Form
Liquid
Stem Cell Type
Mouse Embryonic Stem Cells
Induced Pluripotent Stem Cells
Physicochemical Information
Dimensions
Materials Information
Toxicological Information
Safety Information according to GHS
Safety Information
Product Usage Statements
Quality Assurance
QC PROTOCOL:
Low density plating assay: 1. Plate feeder independent early passage ES cells onto gelatin coated 10 cm plastic tissue culture dish at 1000 cells/10 cm dish in 10-20 mL of Clonal Grade Medium. 2. Change medium every 2-4 days. 3. Monitor for clonal growth with alkaline phosphatase stain.
Colony formation should occur over 4-6 days. The majority of colonies should be alkaline phosphatase positive and show no signs of differentiation.
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 Conditions
• Upon receipt, store clonal grade medium and supplement in the dark at -20°C. Refer to lot expiration date on labels. • Thawed clonal grade medium should be stored in the dark at 4°C for one month. Do not refreeze. • Supplement may be thawed at room temperature, aliquoted and stored in the dark at 4°C for two months. • After supplement is added to clonal grade medium, store in the dark at 4°C for up to two weeks. Do not refreeze.
Packaging Information
Material Size
500 mL
Transport Information
Supplemental Information
Specifications
Global Trade Item Number
Bestellnummer
GTIN
SF001-500P
04053252466465
Documentation
ESGRO Complete PLUS Clonal Grade Medium, 500ml SDB
Transcriptional regulation of developmentally controlled genes is at the heart of differentiation and organogenesis. In this study, we performed global genomic analyses in murine embryonic stem (ES) cells and in human cells in response to activation signals. We identified an essential role for the ELL (eleven-nineteen lysine-rich leukemia gene)/P-TEFb (positive transcription elongation factor)-containing super elongation complex (SEC) in the regulation of gene expression, including several genes bearing paused RNA polymerase II (Pol II). Paused Pol II has been proposed to be associated with loci that respond rapidly to environmental stimuli. However, our studies in ES cells also identified a requirement for SEC at genes without paused Pol II, which also respond dynamically to differentiation signals. Our findings suggest that SEC is a major class of active P-TEFb-containing complexes required for transcriptional activation in response to environmental cues such as differentiation signals.
HDAC1 regulates pluripotency and lineage specific transcriptional networks in embryonic and trophoblast stem cells. Kidder B. L. & Palmer S. Nucleic Acids Res.
1-15
2010
Epigenetic regulation of gene expression is important in maintaining self-renewal of embryonic stem (ES) and trophoblast stem (TS) cells. Histone deacetylases (HDACs) negatively control histone acetylation by removing covalent acetylation marks from histone tails. Because histone acetylation is a known mark for active transcription, HDACs presumably associate with inactive genes. Here, we used genome-wide chromatin immunoprecipitation to investigate targets of HDAC1 in ES and TS cells. Through evaluation of genes associated with acetylated histone H3 marks, and global expression analysis of Hdac1 knockout ES and trichostatin A-treated ES and TS cells, we found that HDAC1 occupies mainly active genes, including important regulators of ES and TS cells self-renewal. We also observed occupancy of methyl-CpG binding domain protein 3 (MBD3), a subunit of the nucleosome remodeling and histone deacetylation (NuRD) complex, at a subset of HDAC1-occupied sequences in ES cells, including the pluripotency regulators Oct4, Nanog and Kfl4. By mapping HDAC1 targets on a global scale, our results describe further insight into epigenetic mechanisms of ES and TS cells self-renewal.
A critical appraisal of factors affecting the accuracy of results obtained when using flow cytometry in stem cell investigations: where do you put your gates? Hughes O. R. et al. Cytometry A
75(9)
803-810
2009
Flow cytometry is used extensively in stem cell investigations but there is wide variation in the methods used for data analysis between laboratories. Data analysis can be challenging in stem cell biology as there is often no clear distinction between positive and negative populations. We have undertaken a critical appraisal of factors that affect the accuracy of results in stem cell applications. We used mouse embryonic stem cells and determined the expression of three common antigens in stem cell investigations, namely CD15, CD184, and c-kit. We have compared different cell preparation methods and gating strategies and also evaluated the use of isotype controls and unstained cells as controls for the identification of positive populations. The use of a "doublet discriminator" using a side scatter area signal versus side scatter height signal dot plot to identify single cells for analysis increases the accuracy of results regardless of the method used to dissociate cells. Isotype controls can be helpful in mimicking cellular nonspecific binding of the experimental antibody reaction. Isotype controls behave differently on stem cells at different stages of differentiation. Analysis of a viable single cell population with careful selection of control cell populations increases the accuracy of results.
Mouse and human embryonic stem (mES and hES) cells have become one of the most intensively studied primary cell types in biomedical research. However, culturing ES cells is notoriously labor intensive. We have optimized current ES cell culture methods by growing mES cells in suspension in a defined medium. This protocol is unsurpassed in time efficiency and typically requires only 20 min of effective hands-on time per week. This protocol maintains a very high degree of pluripotent cells partly by mechanical separation of spontaneously differentiating cells. mES cells can be cultured for extended periods (>6 months) without the loss of pluripotency markers. High passage (>20) adherent mES cultures containing contaminating differentiated cells can be rescued and enriched in undifferentiated ES cells.