Ihre Suche nach: Proteine und Peptide
Proteine werden in Routine-Laborverfahren wie die Bindung von Enzymen oder Kopplung von Peptiden an Trägerproteine verwendet. Diese Sets, Lösungen und Kollagen-Matrizen erfüllen im Labor unzählige Funktionen, die für die Entwicklung von Beziehungen zwischen Proteinen und anderen zellulären Bestandteilen von Bedeutung sind. Die stimulierenden Proteine aus unserem Angebot besitzen verschiedene Aminosäuresequenzen und Funktionen, um die Proben so bearbeiten zu können, dass jegliche Untersuchungszwecke in jeglichen Bereichen erfüllt werden können.
Human recombinant IL-13 R alpha 2 (from HEK293 cells), FITC (fluorescein isothiocyanate)
Supplier: ACROBIOSYSTEMS
Human recombinant IL-13 R alpha 2 (from HEK293 cells), FITC (fluorescein isothiocyanate)
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Cynomolgus monkey recombinant PSMA (from HEK293 cells)
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Cynomolgus monkey recombinant PSMA (from HEK293 cells)
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Human recombinant MAG/ Siglec-4a (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Human recombinant MAG/ Siglec-4a (from HEK293 cells)
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Human recombinant PDGF R alpha (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Human PDGF R alpha / PDGFRA Protein, His Tag.
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Human recombinant Mesothelin (from HEK293)
Supplier: ACROBIOSYSTEMS
Human recombinant Mesothelin (from HEK293)
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Mouse recombinant OX40 ligand (from HEK293)
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Mouse recombinant OX40 ligand (from HEK293)
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Human recombinant PD-L1 (from HEK293)
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Human recombinant PD-L1 (from HEK293)
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Human recombinant GUCY2C (from HEK293 cells), biotin
Supplier: ACROBIOSYSTEMS
Human recombinant GUCY2C (from HEK293 cells), biotin
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Human recombinant TROP-2 (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Human recombinant TROP-2 (from HEK293 cells)
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Mouse recombinant properdin (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Mouse Properdin protein, His Tag.
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Mouse recombinant Fc gamma RIII/ CD16 (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Mouse recombinant Fc gamma RIII/ CD16 (from HEK293 cells)
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Human recombinant CD73 (from HEK293 cells)
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Human recombinant CD73 (from HEK293 cells)
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Cynomolgus monkey recombinant IL-31 (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Cynomolgus monkey recombinant IL-31 (from HEK293 cells)
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Cynomolgus monkey recombinant Siglec-10 (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Cynomolgus monkey recombinant Siglec-10 (from HEK293 cells)
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Human recombinant Her2 (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Human recombinant Her2 (from HEK293 cells)
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Human recombinant Fc gamma RIIIB / CD16b (NA2) (from HEK293 cells)
Supplier: ACROBIOSYSTEMS
Human recombinant Fc gamma RIIIB / CD16b (NA2) (from HEK293 cells)
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Mouse Recombinant GM-CSF (E. coli expressed)
Supplier: STEMCELL Technologies
Granulocyte-macrophage colony-stimulating factor (GM-CSF) promotes the proliferation and differentiation of hematopoietic progenitor cells and the generation of neutrophils, eosinophils, and macrophages. In synergy with other cytokines such as stem cell factor, IL-3, erythropoietin, and thrombopoietin, it also stimulates erythroid and megakaryocyte progenitor cells (Barreda et al.). GM-CSF was first purified from the culture of mouse lung tissue after lipopolysaccharide treatment. GM-CSF is produced by multiple cell types, including stromal cells, Paneth cells, macrophages, dendritic cells (DCs), endothelial cells, smooth muscle cells, fibroblasts, chondrocytes, and Th1 and Th17 cells (Francisco-Cruz et al.). The receptor for GM-CSF (GM-CSFR) is composed of two subunits: the cytokine-specific α subunit (GMRα; CD116) and the common subunit βc (CD131) shared with IL-3 and IL-5 receptors (Broughton et al.). GM-CSFR is expressed on hematopoietic cells, including progenitor cells and immune cells, as well as non-hematopoietic cells. GM-CSF is able to stimulate the development of DCs that ingest, process, and present antigens to the immune system (Francisco-Cruz et al.).
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Human Recombinant FGF-7 (KGF)
Supplier: STEMCELL Technologies
Fibroblast growth factor 7 (FGF-7) is a member of the FGF family, and acts exclusively through a subset of FGF receptor isoforms expressed predominantly by epithelial cells (Finch and Rubin). FGF-7 seems to act specifically on epithelial cells and stimulates proliferation, migration, and differentiation of these cells, and also participates in epithelial protection and repair both in vitro and in vivo (Finch and Rubin; Werner). In contrast, FGF-7 is produced solely by cells of mesenchymal origin, and functions as a paracrine mediator of mesenchymal-epithelial communication (Rubin et al.). FGF-7 has also been shown to supplement several wound-healing properties of bioengineered skin (Erdag et al.) and to induce autophagy in human keratinocytes (Belleudi et al.). Additionally, FGF-7 has a role in pluripotent stem cell differentiation to endodermal pancreatic-like insulin-producing cells and thymic epithelial cells (Inami et al.; Niu et al.).
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Mouse Recombinant IL-33
Supplier: STEMCELL Technologies
Interleukin 33 (IL-33) is a pro-inflammatory cytokine from the IL-1 family. It binds to the ST2 receptor and activates NF-kB and MAPK pathways. IL-33 is expressed by epithelial cells, smooth muscle cells, and fibroblasts in various tissues and organs, as well as resting basophils, mast cells, eosinophils, natural helper cells, group 2 innate lymphoid cells, dendritic cells, and activated macrophages (Schmitz et al.; Yasuda et al.). It contributes to allergic inflammation by stimulating production of the cytokines IL-4, IL-5, and IL-13 in Th2 cells, and stimulates host defense against microbial and viral infections (Liew; Yasuda et al.). In the central nervous system, IL-33 is produced by endothelial cells and astrocytes. It induces proliferation of microglia and mediates production of pro-inflammatory cytokines (Yasuoka et al.).
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Human Recombinant FGF-8B
Supplier: STEMCELL Technologies
Fibroblast growth factor 8B (FGF-8B) is a member of the fibroblast growth factor (FGF) family and is an isoform of FGF-8. Cytokines in the FGF family possess broad mitogenic and cell survival activities (Folkman andamp; Klagsbrun; Kimelman andamp; Kirschner) and are involved in a variety of biological processes, including cell proliferation, differentiation, survival, and apoptosis (Folkman andamp; Klagsbrun; Klagsbrun; Rifkin andamp; Moscatelli). FGF-8B signals through FGF receptors (FGFRs) to activate PI3K and MAPK pathways. FGF-8B is broadly associated with mitogenic and cell survival activities, and regulates gastrulation, epithelial-mesenchymal transition, and later on mesenchymal to epithelial differentiation during embryonic development. FGF-8B has also been found in peripheral blood leukocytes and healthy bone marrow samples (Mattila andamp; Härkönen). FGF-8B has mitogenic effects on somatic cells in the germinal epithelium and is expressed in adult mouse ovarian cells and tissues, which suggests that it regulates maturation of oocytes and seminiferous epithelium in testis (Valve et al.).
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RSV (HLA Class I Control) Peptide Pool
Supplier: STEMCELL Technologies
The RSV (HLA Class I Control) peptide pool is a lyophilised mixture of 28 peptides from respiratory syncytial virus (RSV). The pool consists of defined HLA class I-restricted T cell epitopes, and can be used as an antigen-specific positive control to stimulate T cells.
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Mouse Recombinant PDGF-BB
Supplier: STEMCELL Technologies
The platelet-derived growth factor (PDGF) family has five heparin-binding members that assemble into four homodimers (PDGF-AA, PDGF-BB, PDGF-CC, and PDGF-DD) and one heterodimer (PDGF-AB; Fretto et al.; Li and Eriksson). PDGF signals through the receptor tyrosine kinases PDGFRα and PDGFRβ. It has been shown that PDGF-induced migration involves signaling pathways involving MEK/ERK, EGFR, Src, and PI3K/AKT (Kim et al.). PDGF is a potent mitogen for cells of mesenchymal origin, such as fibroblasts, glial cells, and vascular smooth muscle cells. PDGF has been implicated in pathogenesis of atherosclerosis, glomerulonephritis, cancer, and in the contraction of vascular smooth muscle cells of rat aortic tissues (Fretto et al.; Sachinidis et al.). PDGF-BB is secreted by osteoblasts to induce mesenchymal stem cell migration and angiogenesis. It has also been shown that PDGF-BB is secreted by preosteoclasts during bone modeling and remodeling to induce angiogenesis and thus proper osteogenesis (Xie et al.).
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Human Recombinant Heregulin-beta 1
Supplier: STEMCELL Technologies
Heregulin-beta 1 also known as neuregulin-1 (NRG-1) is a member of the epidermal growth factor (EGF) family of growth factors and acts as a ligand for ErbB family receptor tyrosine kinases (Britsch et al.). Heregulin/neuregulin is a family of structurally related polypeptide growth factors derived from alternatively spliced genes (NRG1, NRG2, NRG3, and NRG4). Heregulin-beta 1 plays an important role during the development of the nervous system, heart, and mammary glands (Britsch). Heregulin-beta 1 is expressed in neuronal cells, and modulates cell growth and differentiation of the cells during development and wound healing (Mei and Xiong). It has been implicated through in vivo and in vitro studies that heregulin-beta 1/ErbB signaling is crucial for multiple aspects of cardiovascular development and protects the heart from ischemic injury (Odiete et al.). Heregulin-beta 1 also promotes invasiveness and metastasis of breast cancer cells (Hutcheson et al.). It has also been shown that heregulin-beta 1 has a role in the growth and maintenance of human embryonic stem cells (Wang et al.).
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Human Recombinant FGF-acidic
Supplier: STEMCELL Technologies
Fibroblast growth factor acidic (FGF-acidic), also known as FGF-1, is a potent activator of DNA synthesis, cell proliferation, and chemotaxis and is known to play numerous roles in development, regeneration, and angiogenesis (Jaye et al.; Galzie et al.; Presta et al.). FGF-acidic is produced by multiple cell types and is capable of activating all cells of mesodermal origin and many cells of neuroectodermal, ectodermal, and endodermal origin. It is found in large quantities in the brain, but is also expressed in hepatocytes, vascular smooth muscle cells, neurons of the CNS, skeletal muscle cells, fibroblasts, keratinocytes, endothelial cells, intestinal columnar epithelial cells, and pituitary basophils and acidophils. FGF-acidic is secreted as a disulfide-linked homodimer and is stored in complex with heparan sulfate, a requirement for its interaction with FGF receptors (Guerrini et al.; Mohammadi et al.). Internalized FGF-acidic signals through protein kinase C and promotes cell survival by inhibiting p53 and proapoptotic signaling (Bouleau et al.).
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Human Recombinant FGF-5
Supplier: STEMCELL Technologies
Fibroblast growth factor 5 (FGF-5) is a secreted, heparin-binding member of the FGF subfamily. FGFs possess broad mitogenic and cell survival activities and are expressed during embryonic development. FGF-5 is expressed in the mesenchyme, skeletal muscles, central nervous systems, and hair follicles. FGF-5 promotes cell differentiation and proliferation by binding FGF receptor 1 and FGF receptor 2 (FGFR1 and FGFR2, respectively). FGF-5 plays an important regulatory role in skeletal muscle development. FGF-5 has also been identified in neurons of the limbic system, especially those of the olfactory bulb and pyramidal cells of the hippocampus (Haub and Goldfarb).
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Mouse recombinant BAFF (from HEK293)
Supplier: ACROBIOSYSTEMS
Mouse recombinant BAFF (from HEK293)
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Mouse recombinant neuropilin-1 (from HEK293)
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Mouse recombinant neuropilin-1 (from HEK293)
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Human recombinant M-CSF (from HEK293)
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Human recombinant M-CSF (from HEK293)
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Mouse recombinant VEGF R1 (from HEK293)
Supplier: ACROBIOSYSTEMS
Mouse recombinant VEGF R1 (from HEK293)
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Human recombinant LILRB3 (from HEK293)
Supplier: ACROBIOSYSTEMS
Human recombinant LILRB3 (from HEK293)