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05-443 Anti-VEGF Antibody, clone JH

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05-443
100 µg  
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      Übersicht

      Replacement Information

      Key Spec Table

      Species ReactivityKey ApplicationsHostFormatAntibody Type
      H, M, R, RbIH(P)MPurifiedMonoclonal Antibody
      Description
      Catalogue Number05-443
      Brand Family Upstate
      Trade Name
      • Upstate
      DescriptionAnti-VEGF Antibody, clone JH
      Alternate Names
      • Vascular permeability factor
      • vascular endothelial growth factor
      • vascular endothelial growth factor A
      • vascular endothelial growth factor isoform VEGF165
      Background InformationThe Flt gene family of receptor tyrosine kinases includes Flt-1, KDR/Flk-1, Flt-3, and Flt-4. They encode receptors for VEGF, characterized by seven Ig-loops within their extracellular domain and a split kinase domain within the cytoplasmic domain. VEGF is an important angiogenic factor of many solid tumors and is also involved in the differentiation of endothelial cells. Flt-1 (Fms-like tyrosine kinase, VEGF-R1) is expressed on endothelial cells and on the common precursors of endothelial and hematopoietic stem cells. KDR (Flk-1, VEGF-R2) is the principal receptor involved in VEGF signaling. KDR is expressed on endothelial cells and stimulates angiogenesis, but is also expressed on bone marrow cells, and is thought to play a role in driving the proliferation of most or all leukemic cells. Flt3 is a class III receptor tyrosine kinase that is closely related to c-Kit and c-Fms. It is expressed in primitive hematopoietic cells and its ligand exerts proliferative effects on these cells in co-operation with other cytokines. Flt3 is also expressed the placenta, testis, spleen, thymus, bone marrow, brain and in cerebellar Purkinje cells. The VEGF receptors stimulate the Ras-MAP kinase pathway, suggesting that it signals as a conventional receptor tyrosine kinase.
      References
      Product Information
      FormatPurified
      HS Code3002 15 90
      Control
      • Expressed in most tissue, including Pancreas, Kidney, Adenocarcinoma.
      PresentationPurified mouse monoclonal IgG1k in buffer containing 10 mM PBS, pH 7.4.
      Quality LevelMQ100
      Applications
      ApplicationThis Anti-VEGF Antibody, clone JH is validated for use in IH(P) for the detection of VEGF.
      Key Applications
      • Immunohistochemistry (Paraffin)
      Applications Not Recommended
      • Western Blotting
      Application NotesImmunohistochemistry: This lot of antibody detected VEGF in formalin fixed, paraffin embedded, human.tissues, using a 1:50 dilution incubated overnight at 4°C.

      Immunoprecipitation: 2 µg of this antibody has been reported to immunoprecipitate VEGF from 1 mg of protein lysate.
      Biological Information
      ImmunogenRecombinant human VEGF121. Clone JH121
      Cloneclone JH
      ConcentrationPlease refer to the Certificate of Analysis for the lot-specific concentration.
      HostMouse
      SpecificityRecognizes 34-54 kDa isoforms of Vascular Endothelial Growth Factor/Vascular Permeability Factor (VEGF/VPF).
      IsotypeIgG1κ
      Species Reactivity
      • Human
      • Mouse
      • Rat
      • Rabbit
      Species Reactivity NoteHuman, rabbit, mouse, and rat. Other species not tested.
      Antibody TypeMonoclonal Antibody
      Entrez Gene Number
      Entrez Gene SummaryThis gene is a member of the PDGF/VEGF growth factor family and encodes a protein that is often found as a disulfide linked homodimer. This protein is a glycosylated mitogen that specifically acts on endothelial cells and has various effects, including mediating increased vascular permeability, inducing angiogenesis, vasculogenesis and endothelial cell growth, promoting cell migration, and inhibiting apoptosis. Elevated levels of this protein is linked to POEMS syndrome, also known as Crow-Fukase syndrome. Mutations in this gene have been associated with proliferative and nonproliferative diabetic retinopathy. Alternatively spliced transcript variants, encoding either freely secreted or cell-associated isoforms, have been characterized. There is also evidence for the use of non-AUG (CUG) translation initiation sites upstream of, and in-frame with the first AUG, leading to additional isoforms.
      Gene Symbol
      • VEGFA
      • VEGF-A
      • VEGF
      • VPF
      • MGC70609
      Purification MethodProtein G Chromatography
      UniProt Number
      UniProt SummaryFUNCTION: SwissProt: P15692 # Growth factor active in angiogenesis, vasculogenesis and endothelial cell growth. Induces endothelial cell proliferation, promotes cell migration, inhibits apoptosis, and induces permeabilization of blood vessels. Binds to the VEGFR1/Flt-1 and VEGFR2/Kdr receptors, heparan sulfate and heparin. Neuropilin-1 binds isoforms VEGF-165 and VEGF-145.
      SIZE: 232 amino acids; 27042 Da
      SUBUNIT: Homodimer; disulfide-linked. Also found as heterodimer with PlGF (By similarity).
      SUBCELLULAR LOCATION: Secreted. Note=VEGF121 is acidic and freely secreted. VEGF165 is more basic, has heparin-binding properties and, although a signicant proportion remains cell-associated, most is freely secreted. VEGF189 is very basic, it is cell-associated after secretion and is bound avidly by heparin and the extracellular matrix, although it may be released as a soluble form by heparin, heparinase or plasmin.
      TISSUE SPECIFICITY: The VEGF189, VEGF-165 and VEGF-121 isoforms are widely expressed, whereas the VEGF206 and VEGF-145 are uncommon.
      SIMILARITY: SwissProt: P15692 ## Belongs to the PDGF/VEGF growth factor family.
      Molecular Weight34-54 kDa isoforms
      Physicochemical Information
      Dimensions
      Materials Information
      Toxicological Information
      Safety Information according to GHS
      Safety Information
      Product Usage Statements
      Quality AssuranceBiological Blockade: Incubation of HUVEC cells with 5 µg/mL of a previous lot and 5 ng/mL of VEGF (Catalog # 01-185) has shown growth inhibition of 20-70%.
      Usage Statement
      • Unless otherwise stated in our catalog or other company documentation accompanying the product(s), our products are intended for research use only and are not to be used for any other purpose, which includes but is not limited to, unauthorized commercial uses, in vitro diagnostic uses, ex vivo or in vivo therapeutic uses or any type of consumption or application to humans or animals.
      Storage and Shipping Information
      Storage ConditionsStable for 1 year at from date of receipt.
      Packaging Information
      Material Size100 µg
      Transport Information
      Supplemental Information
      Specifications
      Global Trade Item Number
      Bestellnummer GTIN
      05-443 04053252675577

      Documentation

      Anti-VEGF Antibody, clone JH SDB

      Titel

      Sicherheitsdatenblatt (SDB) 

      Anti-VEGF Antibody, clone JH Analysenzertifikate

      TitelChargennummer
      Anti-VEGF, clone JH121 2464516
      Anti-VEGF, clone JH121 2483163
      Anti-VEGF, clone JH121 (mouse monoclonal IgG1k) - DAM1432891 DAM1432891
      Anti-VEGF, clone JH121 - 2397055 2397055
      Anti-VEGF, clone JH121 - 0704057817 0704057817
      Anti-VEGF, clone JH121 - 0704057818 0704057818
      Anti-VEGF, clone JH121 - 16292 16292
      Anti-VEGF, clone JH121 - 19055 19055
      Anti-VEGF, clone JH121 - 1937916 1937916
      Anti-VEGF, clone JH121 - 1988574 1988574

      Literatur

      ÜbersichtAnwendungPub Med ID
      Neural progenitor cells regulate microglia functions and activity.
      Mosher, KI; Andres, RH; Fukuhara, T; Bieri, G; Hasegawa-Moriyama, M; He, Y; Guzman, R; Wyss-Coray, T
      Nature neuroscience  15  1485-7  2011

      Abstract anzeigen
      23086334 23086334
      Inhibitory Effect of intravitreal Injection of Bevacizumab on Nerve Growth Factor.
      Jee D, Lee WK
      Current eye research  2010

      Abstract anzeigen
      22040304 22040304
      Irradiated cultured apoptotic peripheral blood mononuclear cells regenerate infarcted myocardium.
      H J Ankersmit, K Hoetzenecker, W Dietl, A Soleiman, R Horvat, M Wolfsberger, C Gerner, S Hacker, M Mildner, B Moser, M Lichtenauer, B K Podesser, H J Ankersmit, K Hoetzenecker, W Dietl, A Soleiman, R Horvat, M Wolfsberger, C Gerner, S Hacker, M Mildner, B Moser, M Lichtenauer, B K Podesser
      European journal of clinical investigation  39  445-56  2009

      Abstract anzeigen
      19397690 19397690
      Inducement of mitogen-activated protein kinases in frozen shoulders.
      Kanbe, K; Inoue, K; Inoue, Y; Chen, Q
      Journal of orthopaedic science : official journal of the Japanese Orthopaedic Association  14  56-61  2009

      Abstract anzeigen Volltextartikel
      19214689 19214689
      Spatial and temporal localization of FGF-2 and VEGF in healing tooth extraction sockets in a rabbit model.
      Zahid Lalani, Mark Wong, Eric M Brey, Antonios G Mikos, P J Duke, Michael J Miller, Carol Johnston, Dina Montufar-Solis
      Journal of oral and maxillofacial surgery : official journal of the American Association of Oral and Maxillofacial Surgeons  63  1500-8  2004

      Abstract anzeigen
      16182919 16182919
      Exogenous Smad3 accelerates wound healing in a rabbit dermal ulcer model.
      Sumiyoshi, K; Nakao, A; Setoguchi, Y; Okumura, K; Ogawa, H
      The Journal of investigative dermatology  123  229-36  2004

      Abstract anzeigen
      15191565 15191565
      Tumor-induced angiogenesis studied in confrontation cultures of multicellular tumor spheroids and embryoid bodies grown from pluripotent embryonic stem cells.
      Wartenberg, M, et al.
      FASEB J., 15: 995-1005 (2001)  2001

      Abstract anzeigen
      Immunohistochemistry (Tissue)11292660 11292660
      Treatment-induced neoangiogenesis in cerebral arteriovenous malformations.
      U Sure, N Butz, A M Siegel, H D Mennel, S Bien, H Bertalanffy
      Clinical neurology and neurosurgery  103  29-32  2001

      Abstract anzeigen
      11311473 11311473
      Hypoxic induction of human vascular endothelial growth factor expression through c-Src activation.
      Mukhopadhyay, D, et al.
      Nature, 375: 577-81 (1995)  1994

      Abstract anzeigen
      7540725 7540725
      Failure of blood-island formation and vasculogenesis in Flk-1-deficient mice.
      Shalaby, F, et al.
      Nature, 376: 62-6 (1995)  1994

      Abstract anzeigen
      7596435 7596435

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      Kategorien

      Life Science Research > Antibodies and Assays > Primary Antibodies