"Stemcell Technologies"
NeuroCult™ Proliferation Supplement (Mouse and Rat)
Supplier: Stemcell Technologies
Supplement for expansion of mouse and rat neural stem and progenitor cells.
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Anti-CD83 Mouse Monoclonal Antibody [clone: HB15e] (PE)
Supplier: Stemcell Technologies
Mouse monoclonal IgG1 antibody against human, rhesus, cynomolgus CD83, PE-conjugated.
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CellAdhere™ Tropoelastin, Human, Lyophilized
Supplier: Stemcell Technologies
Purified tropoelastin, human, lyophilized, for tissue engineering research and cell culture - 1 mg
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MesenCult™ Osteogenic Differentiation Kit (Human)
Supplier: Stemcell Technologies
For the in vitro differentiation of human MSCs into osteoblasts.
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Anti-HLA-DR Mouse Monoclonal Antibody [clone: LN3] (FITC)
Supplier: Stemcell Technologies
Mouse monoclonal IgG2b antibody against human, rhesus HLA-DR, FITC-conjugated.
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EasySep™ 'The Big Easy' Magnet
Supplier: Stemcell Technologies
The EasySep™ 'The Big Easy' magnet is designed for cell separation procedures using EasySep™ reagents when processing a large number of cells, or when using RoboSep™.
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HetaSep™ Erythrocyte Aggregation Agents
Supplier: Stemcell Technologies
For depletion of red blood cells from fresh blood samples and isolation of nucleated cells.
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Anti-CD326 (EpCAM) Mouse Monoclonal Antibody [clone: VU-1D9] (FITC)
Supplier: Stemcell Technologies
Mouse monoclonal IgG1 antibody against human CD326 (EpCAM), FITC-conjugated.
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Anti-CD16/CD32 Rat Monoclonal Antibody [clone: 2.4G2]
Supplier: Stemcell Technologies
Rat monoclonal IgG2b antibody against mouse CD16/CD32, unconjugated.
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EasySep™ Human CD4+ T Cell Isolation Kits
Supplier: Stemcell Technologies
Immunomagnetic isolation of untouched human CD4+ T cells.
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N2 Supplement-B
Supplier: Stemcell Technologies
For neural differentiation of mouse and human ES and iPS cells.
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Collagenase Type IV
Supplier: Stemcell Technologies
For digestion of native collagen fibrils.
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Corning® Lambda™ Plus 12-Channel Pipettor
Supplier: Stemcell Technologies
Measure and transfer liquids precisely and safely using Corning® Lambda™ Plus multi-channel pipettors.
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Human Recombinant IL-2 (CHO-expressed)
Supplier: Stemcell Technologies
Interleukin 2 (IL-2) is a monomeric cytokine that was originally identified as a T cell growth factor (Gaffen and Liu). It binds to heterotrimeric receptors consisting of CD25, CD122, and CD132. Upon binding, it activates JAK3-, STAT5-, and AKT-dependent signaling pathways, which results in cellular proliferation and survival (Ma et al.). The majority of IL-2 is secreted by activated CD4+ and CD8+ T cells, although B cells and dendritic cells were found to produce IL-2 in small amounts. IL-2 downregulates immune responses to prevent autoimmunity during thymic development, influences the development of CD4+CD25+ regulatory T cells, and affects development of follicular helper T cells. IL-2 also controls inflammation by inhibiting Th17 differentiation (Banchereau et al.). High IL-2 levels in serum are associated with progression of scleroderma, rheumatoid arthritis, and gastric and non-small cell lung cancer, though no known disease can be directly attributed to the lack or excess of IL-2 (Gaffen and Liu).
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EasySep™ Human CD14 Positive Selection Kit II
Supplier: Stemcell Technologies
Immunomagnetic positive selection of human CD14+ cells (e.g. monocytes).
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Human Recombinant NGF-beta
Supplier: Stemcell Technologies
Nerve growth factor (NGF)-beta is a prototypical member of the neurotrophin family and has a role in the survival and growth of neural cells, regulating cell growth, promoting differentiation into neurons, and neuron migration. The beta subtype of NGF is biologically active in comparison to the alpha-2 and gamma-2 subtypes. NGF-beta in its secreted form can bind to tyrosine kinase A (TrkA) receptor with high affinity and to p75 (NTR) with low affinity (Levi and Alemà; Sofroniew et al.). NGF has been shown to possess pro-inflammatory and pro-fibrogenic properties (Micera et al.). It has also been shown that overexpression of NGF-beta promotes differentiation of bone marrow mesenchymal stem cells into neurons through regulation of AKT and MAPK pathways (Yuan et al.).



