Macrophage + Monocyte antibody [MAC387]
GTX76579
ApplicationsFlow Cytometry, ImmunoHistoChemistry, ImmunoHistoChemistry Frozen, ImmunoHistoChemistry Paraffin
Product group Antibodies
ReactivityBovine, Canine, Deer, Equine, Feline, Guinea Pig, Goat, Human, Mammals, Mink, Monkey, Primate, Rabbit, Rat
TargetS100A9
Overview
- SupplierGeneTex
- Product NameMacrophage + Monocyte antibody [MAC387]
- Delivery Days Customer9
- Application Supplier NoteIHC-P: 1/100-1/200. IHC-Fr: 1/100-1/200. FACS: 1/50-1/100. *Optimal dilutions/concentrations should be determined by the researcher.Not tested in other applications.
- ApplicationsFlow Cytometry, ImmunoHistoChemistry, ImmunoHistoChemistry Frozen, ImmunoHistoChemistry Paraffin
- CertificationResearch Use Only
- ClonalityMonoclonal
- Clone IDMAC387
- Concentration1 mg/ml
- ConjugateUnconjugated
- Gene ID6280
- Target nameS100A9
- Target descriptionS100 calcium binding protein A9
- Target synonyms60B8AG, CAGB, CFAG, CGLB, L1AG, LIAG, MAC387, MIF, MRP14, NIF, P14, S100-A9, protein S100-A9, MRP-14, calgranulin B, calprotectin L1H subunit, leukocyte L1 complex heavy chain, migration inhibitory factor-related protein 14
- HostMouse
- IsotypeIgG1
- Scientific DescriptionThe protein encoded by this gene is a member of the S100 family of proteins containing 2 EF-hand calcium-binding motifs. S100 proteins are localized in the cytoplasm and/or nucleus of a wide range of cells, and involved in the regulation of a number of cellular processes such as cell cycle progression and differentiation. S100 genes include at least 13 members which are located as a cluster on chromosome 1q21. This protein may function in the inhibition of casein kinase and altered expression of this protein is associated with the disease cystic fibrosis. [provided by RefSeq, Jul 2008]
- ReactivityBovine, Canine, Deer, Equine, Feline, Guinea Pig, Goat, Human, Mammals, Mink, Monkey, Primate, Rabbit, Rat
- Storage Instruction-20°C or -80°C,2°C to 8°C
- UNSPSC12352203
References
- Salas-Fajardo MY, Benavides J, Azevedo A, et al. Fatal toxoplasmosis in a captive squirrel monkey (Saimiri boliviensis) in Portugal. Vet Res Commun. 2023,47(4):2363-2370. doi: 10.1007/s11259-023-10179-xRead this paper
- Passmore MR, Byrne L, Obonyo NG, et al. Inflammation and lung injury in an ovine model of fluid resuscitated endotoxemic shock. Respir Res. 2018,19(1):231. doi: 10.1186/s12931-018-0935-4Read this paper
- Lagumersindez-Denis N, Wrzos C, Mack M, et al. Differential contribution of immune effector mechanisms to cortical demyelination in multiple sclerosis. Acta Neuropathol. 2017,134(1):15-34. doi: 10.1007/s00401-017-1706-xRead this paper
- Passmore MR, Fung YL, Simonova G, et al. Inflammation and lung injury in an ovine model of extracorporeal membrane oxygenation support. Am J Physiol Lung Cell Mol Physiol. 2016,311(6):L1202-L1212. doi: 10.1152/ajplung.00296.2016Read this paper
- Kramann N, Neid K, Menken L, et al. Increased Meningeal T and Plasma Cell Infiltration is Associated with Early Subpial Cortical Demyelination in Common Marmosets with Experimental Autoimmune Encephalomyelitis. Brain Pathol. 2015,25(3):276-86. doi: 10.1111/bpa.12180Read this paper
- Feng PH, Lee KY, Chang YL, et al. CD14(+)S100A9(+) monocytic myeloid-derived suppressor cells and their clinical relevance in non-small cell lung cancer. Am J Respir Crit Care Med. 2012,186(10):1025-36. doi: 10.1164/rccm.201204-0636OCRead this paper





