siRNA / miRNA gene silencing Mouse NIH-3T3

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Get tips on using KAPA Stranded mRNA-Seq Kit to perform RNA sequencing Mouse - Chondrocytes

Products Roche Lifesciences KAPA Stranded mRNA-Seq Kit
hCas9 Product

Get tips on using hCas9 to perform CRISPR Mouse - Deletion Dck

Products Addgene hCas9

Get tips on using BrdU antibody to perform Immunohistochemistry Mouse - BrdU

Products Bio-Rad Laboratories BrdU antibody

Get tips on using LC3B Antibody to perform Immunohistochemistry Mouse - LC3

Products Novus Biologicals LC3B Antibody

Get tips on using LC3B Antibody to perform Immunohistochemistry Mouse - LC3

Products Novus Biologicals LC3B Antibody
T-4103 Product

Get tips on using T-4103 to perform Immunohistochemistry Mouse - Somatostatin

Products BMA Biomedicals T-4103
T-4092 Product

Get tips on using T-4092 to perform Immunohistochemistry Mouse - PYY

Products BMA Biomedicals T-4092

Get tips on using Lysozyme/Muramidase to perform Immunohistochemistry Mouse - Lysozyme

Products Diagnostic BioSystems Lysozyme/Muramidase

Get tips on using lenti sgRNA(MS2)_zeo backbone to perform CRISPR Mouse - Activation C2C12 FST

Products Addgene lenti sgRNA(MS2)_zeo backbone

Human embryonic stem cells (hESCs) and induced pluripotent stem cells (iPSCs) have been greatly used for studies on embryonic development and cell differentiation.iPSCs provide a stable source for either self-renewal or differentiation into suitable cells when cultured in a particular environment. Pluripotent cell culture was originally started by deriving cells from inner cell mass (ICM) from pre-implanted blastocysts, these were called embryonic stem cells. These cells after isolation can be grown on traditional extracellular matrices (like mouse embryonic fibroblasts, MEFs) or feeder-free culture systems. DMEM/F12 has been the most commonly used basal media in the culture of pluripotent cells. These cells are cultured at normal atmospheric oxygen levels, 21%, however, some studies have proposed that 4% oxygen tension may be better for hESC growth. Higher D-glucose concentration (4.2g/l) and osmolarity (320mOsm) that mimics the natural environment of embryonic tissue are optimal for the growth of hESCs. Supplements like N2 and/or B-27, in the presence of growth factors like bFGF, have been shown to increase pluripotency of these cells. bFGF, FGF2 and other ligands of receptor tyrosine kinases like IGF are also required or maintain self-renewal ability of these cells. TGF𝛃1, by its activation of SMAD2/3 signalling, also represses differentiation of iPSCs. Other compounds like ROCK inhibitors reduce blebbing and apoptosis in these cells to maintain their clonogenicity. However, an inhibitor for LIF (leukaemia inhibitory factor, which is one of the pluripotent genes) has an opposing effect. Therefore, it is important to understand the culture conditions and media composition that affect downstream signalling in hESCs or iPSCs that may lead to their differentiation.

Cell culture media Stem cell culture media NCH421K cells primary glioma

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