|Application / Reactivity||Human|
|Biochemical Assay (BCA)||2 Antibodies|
|Blocking Reagent (BR)||2 Antibodies|
|Enzyme Immunoassay (EIA)||3 Antibodies|
|Flow Cytometry (FACS)||50 Antibodies|
|Immunocytochemistry (ICC)||7 Antibodies|
|Immunofluorescence (IF)||12 Antibodies|
|Immunofluorescence (Paraffin-embedded Sections) (IF (p))||22 Antibodies|
|Immunohistochemistry (IHC)||17 Antibodies|
|Immunohistochemistry (Frozen Sections) (IHC (fro))||1 Antibodies|
|Immunohistochemistry (Paraffin-embedded Sections) (IHC (p))||9 Antibodies|
|Immunoprecipitation (IP)||5 Antibodies|
|Mass Cytometry (CyTOF)||2 Antibodies|
|Multiplex Assay (MA)||1 Antibodies|
|Neutralization (Neut)||1 Antibodies|
|Stimulation (St)||2 Antibodies|
|Western Blotting (WB)||64 Antibodies|
|Antigen||Interleukin 7 Receptor (IL7R) Antibodies|
|Conjugate||This IL7R antibody is un-conjugated Alternatives|
Flow Cytometry (FACS), Immunoprecipitation (IP), Neutralization (Neut)
|21 references available|
|Supplier||Log in to see|
Product Details anti-IL7R AntibodyTarget Details IL7R Application Details Handling References for anti-IL7R Antibody (ABIN786861) Images
Target Details IL7RProduct Details anti-IL7R Antibody Application Details Handling References for anti-IL7R Antibody (ABIN786861) Images back to top
|Alternative Name||CD127 / IL7R (IL7R Antibody Abstract)|
|Research Area||CD Antigens, Surface Receptors of Immune Cells, Cytokines, Immunology, Virology, Inflammation, Cancer|
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|Restrictions||For Research Use only|
References for anti-IL7R Antibody (ABIN786861)Product Details anti-IL7R Antibody Target Details IL7R Application Details Handling Images back to top
|Product cited in:||
Munneke, Björklund, Mjösberg et al.: "Activated innate lymphoid cells are associated with a reduced susceptibility to graft-versus-host disease." in: Blood, Vol. 124, Issue 5, pp. 812-21, 2014 (PubMed).
Péguillet, Milder, Louis et al.: "High numbers of differentiated effector CD4 T cells are found in patients with cancer and correlate with clinical response after neoadjuvant therapy of breast cancer." in: Cancer research, Vol. 74, Issue 8, pp. 2204-16, 2014 (PubMed).
Sereti, Estes, Thompson et al.: "Decreases in colonic and systemic inflammation in chronic HIV infection after IL-7 administration." in: PLoS pathogens, Vol. 10, Issue 1, pp. e1003890, 2014 (PubMed).
Yu, Pappu, Ramirez-Carrozzi et al.: "TNF superfamily member TL1A elicits type 2 innate lymphoid cells at mucosal barriers." in: Mucosal immunology, Vol. 7, Issue 3, pp. 730-40, 2014 (PubMed).
Ponchel, Goëb, Parmar et al.: "An immunological biomarker to predict MTX response in early RA." in: Annals of the rheumatic diseases, Vol. 73, Issue 11, pp. 2047-53, 2014 (PubMed).
Yatim, Benne, Sobhian et al.: "NOTCH1 nuclear interactome reveals key regulators of its transcriptional activity and oncogenic function." in: Molecular cell, Vol. 48, Issue 3, pp. 445-58, 2012 (PubMed).
Petrovas, Yamamoto, Gerner et al.: "CD4 T follicular helper cell dynamics during SIV infection." in: The Journal of clinical investigation, Vol. 122, Issue 9, pp. 3281-94, 2012 (PubMed).
Puronen, Thompson, Imamichi et al.: "Decreased interleukin 7 responsiveness of T lymphocytes in patients with idiopathic CD4 lymphopenia." in: The Journal of infectious diseases, Vol. 205, Issue 9, pp. 1382-90, 2012 (PubMed).
Noakes, Vlachava, Kremmyda et al.: "Increased intake of oily fish in pregnancy: effects on neonatal immune responses and on clinical outcomes in infants at 6 mo." in: The American journal of clinical nutrition, Vol. 95, Issue 2, pp. 395-404, 2012 (PubMed).
Young, Angel: "HIV infection of thymocytes inhibits IL-7 activity without altering CD127 expression." in: Retrovirology, Vol. 8, pp. 72, 2011 (PubMed).
Mjösberg, Trifari, Crellin et al.: "Human IL-25- and IL-33-responsive type 2 innate lymphoid cells are defined by expression of CRTH2 and CD161." in: Nature immunology, Vol. 12, Issue 11, pp. 1055-62, 2011 (PubMed).
Pankewycz, Leca, Kohli et al.: "Low-dose rabbit antithymocyte globulin induction therapy results in prolonged selective lymphocyte depletion irrespective of maintenance immunosuppression." in: Transplantation proceedings, Vol. 43, Issue 2, pp. 462-5, 2011 (PubMed).
van Roon, Hartgring, van der Wurff-Jacobs et al.: "Numbers of CD25+Foxp3+ T cells that lack the IL-7 receptor are increased intra-articularly and have impaired suppressive function in RA patients." in: Rheumatology (Oxford, England), Vol. 49, Issue 11, pp. 2084-9, 2010 (PubMed).
Presicce, Moreno-Fernandez, Lages et al.: "Association of two clones allows for optimal detection of human FOXP3." in: Cytometry. Part A : the journal of the International Society for Analytical Cytology, Vol. 77, Issue 6, pp. 571-9, 2010 (PubMed).
Portevin, Poupot, Rolland et al.: "Regulatory activity of azabisphosphonate-capped dendrimers on human CD4+ T cell proliferation enhances ex-vivo expansion of NK cells from PBMCs for immunotherapy." in: Journal of translational medicine, Vol. 7, pp. 82, 2009 (PubMed).
Vudattu, Kuhlmann-Berenzon, Khademi et al.: "Increased numbers of IL-7 receptor molecules on CD4+CD25-CD107a+ T-cells in patients with autoimmune diseases affecting the central nervous system." in: PLoS ONE, Vol. 4, Issue 8, pp. e6534, 2009 (PubMed).
Sauce, Larsen, Abbott et al.: "Upregulation of interleukin 7 receptor alpha and programmed death 1 marks an epitope-specific CD8+ T-cell response that disappears following primary Epstein-Barr virus infection." in: Journal of virology, Vol. 83, Issue 18, pp. 9068-78, 2009 (PubMed).
Sharma, Hughes, Murillo et al.: "CD8+ T-cell interleukin-7 receptor alpha expression as a potential indicator of disease status in HIV-infected children." in: PLoS ONE, Vol. 3, Issue 12, pp. e3986, 2008 (PubMed).
Mason, Rose, Seddiki et al.: "Low pre-infection levels and loss of central memory CD4+ T cells may predict rapid progression in SIV-infected pigtail macaques." in: Virology, Vol. 381, Issue 1, pp. 11-5, 2008 (PubMed).
Zonios, Falloon, Bennett et al.: "Idiopathic CD4+ lymphocytopenia: natural history and prognostic factors." in: Blood, Vol. 112, Issue 2, pp. 287-94, 2008 (PubMed).
Scupoli, Perbellini, Krampera et al.: "Interleukin 7 requirement for survival of T-cell acute lymphoblastic leukemia and human thymocytes on bone marrow stroma." in: Haematologica, Vol. 92, Issue 2, pp. 264-6, 2007 (PubMed).
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