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    hif-1-alpha-antibody-chip-grade-ab2185.pdf

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Cardiovascular Hypoxia HIF
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Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)

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  • ChIP - Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)
  • Immunocytochemistry/ Immunofluorescence - Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)
  • Western blot - Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)
  • Immunohistochemistry (Formalin/PFA-fixed paraffin-embedded sections) - Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)
  • Immunoprecipitation - Anti-HIF-1 alpha antibody - ChIP Grade (ab2185)
  • Datasheet
  • References (123)
  • Protocols

Publishing research using ab2185? Please let us know so that we can cite the reference in this datasheet.

ab2185 has been referenced in 123 publications.

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  • Prieto-Domínguez N  et al. Melatonin enhances sorafenib actions in human hepatocarcinoma cells by inhibiting mTORC1/p70S6K/HIF-1a and hypoxia-mediated mitophagy. Oncotarget 8:91402-91414 (2017). PubMed: 29207653
  • Palsson-McDermott EM  et al. Pyruvate Kinase M2 Is Required for the Expression of the Immune Checkpoint PD-L1 in Immune Cells and Tumors. Front Immunol 8:1300 (2017). PubMed: 29081778
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  • Zepeda-Orozco D  et al. EGF regulation of proximal tubule cell proliferation and VEGF-A secretion. Physiol Rep 5:N/A (2017). PubMed: 28963126
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  • Savarin M  et al. Electrotransfer of plasmid DNA radiosensitizes B16F10 tumors through activation of immune response. Radiol Oncol 51:30-39 (2017). IHC-P ; Mouse . PubMed: 28265230
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  • Li Z  et al. Ferulic Acid Improves Functional Recovery after Acute Spinal Cord Injury in Rats by Inducing Hypoxia to Inhibit microRNA-590 and Elevate Vascular Endothelial Growth Factor Expressions. Front Mol Neurosci 10:183 (2017). ChIP ; Rat . PubMed: 28642684
  • Juhasz A  et al. NADPH oxidase 1 supports proliferation of colon cancer cells by modulating reactive oxygen species-dependent signal transduction. J Biol Chem 292:7866-7887 (2017). IHC-P . PubMed: 28330872
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  • Hamanaka RB  et al. The Mitochondrial Respiratory Chain Is Required for Organismal Adaptation to Hypoxia. Cell Rep 15:451-459 (2016). PubMed: 27068470
  • Kwak JH  et al. HIF2a/EFEMP1 cascade mediates hypoxic effects on breast cancer stem cell hierarchy. Oncotarget 7:43518-43533 (2016). WB . PubMed: 27270657
  • David V  et al. Inflammation and functional iron deficiency regulate fibroblast growth factor 23 production. Kidney Int 89:135-46 (2016). WB . PubMed: 26535997
  • Lee KE  et al. Hif1a Deletion Reveals Pro-Neoplastic Function of B Cells in Pancreatic Neoplasia. Cancer Discov 6:256-69 (2016). IHC ; Mouse . PubMed: 26715642
  • Khaliullina H  et al. Nutrient-Deprived Retinal Progenitors Proliferate in Response to Hypoxia: Interaction of the HIF-1 and mTOR Pathway. J Dev Biol 4:N/A (2016). PubMed: 27280081
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  • Wang F  et al. Renalase contributes to the renal protection of delayed ischaemic preconditioning via the regulation of hypoxia-inducible factor-1a. J Cell Mol Med 19:1400-9 (2015). ChIP . PubMed: 25781495
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  • Xin X  et al. Hypoxic retinal Muller cells promote vascular permeability by HIF-1-dependent up-regulation of angiopoietin-like 4. Proc Natl Acad Sci U S A 110:E3425-34 (2013). WB ; Mouse . PubMed: 23959876
  • Ronkainen VP  et al. Hypoxia-inducible factor 1-induced G protein-coupled receptor 35 expression is an early marker of progressive cardiac remodelling. Cardiovasc Res N/A:N/A (2013). PubMed: 24095869
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  • Villar D  et al. Cooperativity of stress-responsive transcription factors in core hypoxia-inducible factor binding regions. PLoS One 7:e45708 (2012). PubMed: 23029193
  • Shen GM  et al. Hypoxia-inducible factor-1 (HIF-1) promotes LDL and VLDL uptake through inducing VLDLR under hypoxia. Biochem J 441:675-83 (2012). PubMed: 21970364
  • Weijts BG  et al. E2F7 and E2F8 promote angiogenesis through transcriptional activation of VEGFA in cooperation with HIF1. EMBO J 31:3871-84 (2012). ChIP . PubMed: 22903062
  • Doublier S  et al. HIF-1 activation induces doxorubicin resistance in MCF7 3-D spheroids via P-glycoprotein expression: a potential model of the chemo-resistance of invasive micropapillary carcinoma of the breast. BMC Cancer 12:4 (2012). IHC-P ; Human . PubMed: 22217342
  • Zhou W  et al. HIF1a induced switch from bivalent to exclusively glycolytic metabolism during ESC-to-EpiSC/hESC transition. EMBO J : (2012). WB ; Mouse . PubMed: 22446391
  • Hari Kishore A  et al. Hypoxia and PGE(2) regulate MiTF-CX during cervical ripening. Mol Endocrinol 26:2031-45 (2012). PubMed: 23144021
  • Stiehl DP  et al. Non-canonical HIF-2a function drives autonomous breast cancer cell growth via an AREG-EGFR/ErbB4 autocrine loop. Oncogene 31:2283-97 (2012). PubMed: 21927022
  • Wollenick K  et al. Synthetic transactivation screening reveals ETV4 as broad coactivator of hypoxia-inducible factor signaling. Nucleic Acids Res 40:1928-43 (2012). ChIP . PubMed: 22075993
  • Hu J  et al. Interaction of HIF and USF signaling pathways in human genes flanked by hypoxia-response elements and E-box palindromes. Mol Cancer Res 9:1520-36 (2011). ChIP ; Human . PubMed: 21984181
  • Jensen KS  et al. FoxO3A promotes metabolic adaptation to hypoxia by antagonizing Myc function. EMBO J 30:4554-70 (2011). ChIP . PubMed: 21915097
  • Gaber T  et al. Macrophage migration inhibitory factor counterregulates dexamethasone-mediated suppression of hypoxia-inducible factor-1alpha function and differentially influences human CD4+ T cell proliferation under hypoxia. J Immunol 186:764-74 (2011). ChIP ; Human . PubMed: 21169549
  • Vanhorebeek I  et al. Insufficient activation of autophagy allows cellular damage to accumulate in critically ill patients. J Clin Endocrinol Metab 96:E633-45 (2011). WB ; Human . PubMed: 21270330
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  • Pescador N  et al. Hypoxia promotes glycogen accumulation through hypoxia inducible factor (HIF)-mediated induction of glycogen synthase 1. PLoS One 5:e9644 (2010). ChIP ; Mouse . PubMed: 20300197
  • Acosta-Iborra B  et al. Macrophage oxygen sensing modulates antigen presentation and phagocytic functions involving IFN-gamma production through the HIF-1alpha transcription factor. J Immunol 182:3155-64 (2009). ChIP ; Mouse . PubMed: 19234213
  • Piña-Oviedo S  et al. Hypoxia inducible factor-1 alpha activation of the JCV promoter: role in the pathogenesis of progressive multifocal leukoencephalopathy. Acta Neuropathol 118:235-47 (2009). ChIP ; Human . PubMed: 19360424
  • Zhang Z  et al. MicroRNA miR-210 modulates cellular response to hypoxia through the MYC antagonist MNT. Cell Cycle 8:2756-68 (2009). ChIP ; Human . PubMed: 19652553
  • Beyer S  et al. The histone demethylases JMJD1A and JMJD2B are transcriptional targets of hypoxia-inducible factor HIF. J Biol Chem 283:36542-52 (2008). ChIP ; Human . PubMed: 18984585
  • Sahlgren C  et al. Notch signaling mediates hypoxia-induced tumor cell migration and invasion. Proc Natl Acad Sci U S A 105:6392-7 (2008). ChIP ; Human . PubMed: 18427106
  • Belaidi E  et al. Prevention of HIF-1 activation and iNOS gene targeting by low-dose cadmium results in loss of myocardial hypoxic preconditioning in the rat. Am J Physiol Heart Circ Physiol 294:H901-8 (2008). ChIP ; Rat . PubMed: 18083903
  • Kulshreshtha R  et al. A microRNA signature of hypoxia. Mol Cell Biol 27:1859-67 (2007). ChIP ; Human . PubMed: 17194750
  • Anderson CJ  et al. Hypoxic regulation of telomerase gene expression by transcriptional and post-transcriptional mechanisms. Oncogene 25:61-9 (2006). ChIP ; Human . PubMed: 16170363
  • Pescador N  et al. Identification of a functional hypoxia-responsive element that regulates the expression of the egl nine homologue 3 (egln3/phd3) gene. Biochem J 390:189-97 (2005). ChIP ; Human . PubMed: 15823097
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