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CD7 & saporin

Anti-CD7 & saporin Products
- AbPlus™ Anti-CD7 Magnetic Beads (VS-0724-YC714) (VS-0724-YC714)
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- Target: CD7
- Target Species: Human
- Application: IP, Protein Purification
- Anti-CD7 immunotoxin TH-69 (scFv)-PE (AGTO-G011E)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
- Anti-CD7 immunotoxin TH-69 (scFv)-RTA (AGTO-G011R)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
- Anti-CD7 immunotoxin TH-69 (scFv)-Sap (AGTO-G011S)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
- Anti-CD7 immunotoxin (IgG)-PE (AGTO-G082E)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
- Anti-CD7 immunotoxin (IgG)-RTA (AGTO-G082R)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
- Anti-CD7 immunotoxin (IgG)-Sap (AGTO-G082S)
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- Species Reactivity: Human
- Application: Cytotoxicity assay, Function study
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- Target: CD7
- Species Reactivity: Human
- Cytokine 1: sFasL
- Host: Mouse
- Cytokine 1 Species: Human
- Molecule Class: scFv-sFasL
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- Species Reactivity: Human
- Type: Mouse IgG2a, kappa
- Application: FC
- Anti-CD7 Immunohistochemistry Kit (VS-0325-XY372)
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- Species Reactivity: Human
- Target: CD7
- Application: IHC
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- Species Reactivity: Human
- Target: CD7
- Host Animal: Human
- Application: ELISA, FC, Cell-uptake
- Anti-Human CD7 Immunohistochemistry Kit (VS-0525-XY1214)
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- Species Reactivity: Human
- Target: CD7
- Application: IHC
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For Research Use Only. Not For Clinical Use.
CD7 (CD7 Molecule) is a Protein Coding gene. Diseases associated with CD7 include Pityriasis Lichenoides Et Varioliformis Acuta and T-Cell Leukemia. Among its related pathways are Hematopoietic cell lineage and Innate Lymphoid Cell Differentiation Pathways. Gene Ontology (GO) annotations related to this gene include receptor activity.
Saporin is a so-called ribosome inactivating protein (RIP), due to its N-glycosidase activity, from the seeds of Saponaria officinalis (common name: soapwort).Saporin depurinate the ribosomal RNA in a specific position; rendering the large subunit of ribosomes unable to bind the elongation factors. The consequent arrest of protein synthesis is responsible for the cytotoxicity.