![ICC/IF analysis of MOLM-7 cells using GTX18228 CD34 antibody [4H11(APG)] (PE). ICC/IF analysis of MOLM-7 cells using GTX18228 CD34 antibody [4H11(APG)] (PE).](https://www.genetex.com/upload/website/prouct_img/normal/GTX18228/GTX18228_20191025_AP_002_131_w_23060620_983.webp)
ICC/IF analysis of MOLM-7 cells using GTX18228 CD34 antibody [4H11(APG)] (PE).
CD34 antibody [4H11(APG)] (PE)
![Research Use Only](static/images/certificates/ruo.jpg)
GTX18228
ApplicationsFlow Cytometry, ImmunoFluorescence, ImmunoCytoChemistry
Product group Antibodies
ReactivityHuman
TargetCD34
Overview
- SupplierGeneTex
- Product NameCD34 antibody [4H11(APG)] (PE)
- Delivery Days Customer9
- Antibody SpecificityThis antibody reacts with Class III epitope on CD34 (Mucosialin). The antibody 4H11[APG] completely blocks binding of Class II antibody QBEnd10 and Class III antibodies BIRMA K3 and 8G12 on KG1a cell line.
- Application Supplier NoteFACS: 20 microl reagent / 100 microl of whole blood or 106 cells in a suspension. *Optimal dilutions/concentrations should be determined by the researcher.Not tested in other applications.
- ApplicationsFlow Cytometry, ImmunoFluorescence, ImmunoCytoChemistry
- CertificationResearch Use Only
- ClonalityMonoclonal
- Clone ID4H11(APG)
- ConjugateRPE
- FormulationLiquid
- Gene ID947
- Target nameCD34
- Target descriptionCD34 molecule
- Target synonymsCD34 antigen; hematopoietic progenitor cell antigen CD34
- HostMouse
- IsotypeIgG1
- Protein IDP28906
- Protein NameHematopoietic progenitor cell antigen CD34
- Scientific DescriptionThe protein encoded by this gene may play a role in the attachment of stem cells to the bone marrow extracellular matrix or to stromal cells. This single-pass membrane protein is highly glycosylated and phosphorylated by protein kinase C. Two transcript variants encoding different isoforms have been found for this gene. [provided by RefSeq, Aug 2011]
- ReactivityHuman
- Storage Instruction2°C to 8°C
- UNSPSC12352203
References
- Mitochondrial Transfer of Whartons Jelly Mesenchymal Stem Cells Eliminates Mutation Burden and Rescues Mitochondrial Bioenergetics in Rotenone-Stressed MELAS Fibroblasts. Lin TK et al., 2019, Oxid Med Cell LongevRead more