| Description | GJA1 Human Pre-designed siRNA Set A contains three designed siRNAs for GJA1 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components GJA1 siRNA-1: 5 nmol (HPLC) GJA1 siRNA-2: 5 nmol (HPLC) GJA1 siRNA-3: 5 nmol (HPLC) siRNA Negative Control: 5 GJA1 Human Pre-designed siRNA Set A contains three designed siRNAs for GJA1 gene (Human), as well as a negative control, a positive control, and a FAM-labeled negative control. Components GJA1 siRNA-1: 5 nmol (HPLC) GJA1 siRNA-2: 5 nmol (HPLC) GJA1 siRNA-3: 5 nmol (HPLC) siRNA Negative Control: 5 nmol (HPLC) FAM-labeled siRNA Negative Control: 5 nmol (HPLC) GAPDH siRNA Positive Control:5 nmol (HPLC)... Read More | Recombinant human basic fibroblast growth factor (also known as basic FGF, bFGF, FGF2, FGF-beta, or heparin-binding growth factor), is a biologically active protein suitable for cell culture applications. bFGF regulates diverse processes such as cell proliferation, differentiation, survival, Recombinant human basic fibroblast growth factor (also known as basic FGF, bFGF, FGF2, FGF-beta, or heparin-binding growth factor), is a biologically active protein suitable for cell culture applications. bFGF regulates diverse processes such as cell proliferation, differentiation, survival, adhesion, motility, apoptosis, limb formation, and wound recovery. bFGF can be used in studies of angiogenesis, fibroblast mitosis, axonal outgrowth in PC-12 cells, receptor binding, and tyrosine phosphorylation. This strain is expressed in recombinant Escherichia coli, and after multi-step separation and purification, it is dissolved in 10mM PBS, 0.15 M NaCl (pH7.2) solution, filtered through a 0.22 µm filter membrane, and then freeze-dried to make a lyophilized powder... Read More | Purity≥ 95% SDS-PAGE.Additional sequence informationMature chain.FunctionCould be a growth factor active in the process of wound healing. Acts as a mitogen in the lung. May act in a manner similar to FGF-7 | Purity:>95%, by SDS-PAGE visualized with Coomassie® Blue StainingDescription:ROR1 (Receptor tyrosine kinase-like orphan receptor 1), also known as neurotrophic tyrosine kinase receptor-related 1 (NTRKR1), is a member of the ROR family within the receptor tyrosine kinases (RTK) superfamily. Purity:>95%, by SDS-PAGE visualized with Coomassie® Blue StainingDescription:ROR1 (Receptor tyrosine kinase-like orphan receptor 1), also known as neurotrophic tyrosine kinase receptor-related 1 (NTRKR1), is a member of the ROR family within the receptor tyrosine kinases (RTK) superfamily. Two ROR family members (ROR1 and ROR2) have been identified and are characterized by their intracellular tyrosine kinase domains, which are highly related to those of the Trk-family receptor tyrosine kinases, and by their extracellular Frizzled-like cysteine-rich domains and kringle domains, common to receptors of the Wnt family members. Human ROR1 is a type I transmembrane protein with 937 amino acids in length. It contains a 29 amino acid signal sequence, a 377 amino acid extracellular domain (ECD), a 21 amino acid transmembrane segment, and a 510 amino acid cytoplasmic region. Human ROR1 shares 97% and 58% amino acid sequence identity with mouse ROR1 and human ROR2, respectively. ROR1 has been shown to play crucial roles in developmental morphogenesis by acting as receptors or co-receptors to mediate Wnt5a-induced signaling. The bioactivity of ROR1 is measured by its ability to bind biotinylated recombinant mouse Wnt-5a in a functional ELISA... Read More | Purity:>95%, by SDS-PAGE visualized with Coomassie® Blue Staining. Description: 100B, previously called S100 beta, belongs to the S100 family within the EF-hand superfamily of Ca2+ binding proteins. S100 proteins contain two EF-hand motifs that differ in affinity, separated by a hingePurity:>95%, by SDS-PAGE visualized with Coomassie® Blue Staining. Description: 100B, previously called S100 beta, belongs to the S100 family within the EF-hand superfamily of Ca2+ binding proteins. S100 proteins contain two EF-hand motifs that differ in affinity, separated by a hinge region with a hydrophobic cleft that is exposed upon Ca2+ binding. S100B is a 91 amino acid (aa) protein, after removal of the initial methionine, and is found as homodimers of 10.4 kDa monomers. Human S100B shares 99%, 98%, 100%, 99% and 97% aa sequence identity with mouse, rat, rabbit, equine and bovine S100B, respectively. Within the S100 family, human S100B shows the highest aa identity (59%) with S100A1. S100B is expressed primarily by astrocytes and oligodendrocytes in the central nervous system, and by Schwann cells in the peripheral nervous system. Ca2+-bound S100B interacts in vitro with at least 20 cytoplasmic proteins, including several structural molecules such as tubulin and GFAP. It can inhibit the phosphorylation of these kinase substrates and others such as tau and neuromodulin. Astrocytes can secrete S100B, which then acts in a cytokine-like manner. Nanomolar concentrations of S100B are secreted constitutively, promote proliferation, and are neurotrophic and anti-apoptotic. Blood levels of S100B reflect extracellular concentrations within the nervous system, and are elevated in Down’s syndrome, Alzheimer’s disease and Tourette’s syndrome, metabolic stress, acute brain injury and brain tumors. Micromolar concentrations of S100B can be destructive and pro-apoptotic; they induce the expression of iNOS, COX-2, IL-1, IL‑6 and TNF-alpha by microglia, astrocytes or neurons. Most extracellular actions of S100B can be mediated by RAGE (receptor for advanced glycation end products), which is also a receptor for other S100 proteins... Read More |