Date published: 2025-10-14

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HIF PHD2 Antibody (H-8): sc-271835

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Datasheets
  • HIF PHD2 Antibody (H-8) is a mouse monoclonal IgG1 κ HIF PHD2 antibody, cited in 20 publications, provided at 200 µg/ml
  • raised against amino acids 240-288 mapping within an internal region of HIF PHD2 of human origin
  • recommended for detection of HIF PHD2 of mouse, rat and human origin by WB, IP, IF and ELISA
  • Anti-HIF PHD2 Antibody (H-8) is available conjugated to agarose for IP; HRP for WB, IHC(P) and ELISA; and to either phycoerythrin or FITC for IF, IHC(P) and FCM
  • also available conjugated to Alexa Fluor® 488, Alexa Fluor® 546, Alexa Fluor® 594 or Alexa Fluor® 647 for WB (RGB), IF, IHC(P) and FCM, and for use with RGB fluorescent imaging systems, such as iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • also available conjugated to Alexa Fluor® 680 or Alexa Fluor® 790 for WB (NIR), IF and FCM; for use with Near-Infrared (NIR) detection systems, such as LI-COR®Odyssey®, iBright™ FL1000, FluorChem™, Typhoon, Azure and other comparable systems
  • m-IgG Fc BP-HRP and m-IgG1 BP-HRP are the preferred secondary detection reagents for HIF PHD2 Antibody (H-8) for WB applications. These reagents are now offered in bundles with HIF PHD2 Antibody (H-8) (see ordering information below).

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HIF PHD2 Antibody (H-8) is a mouse monoclonal IgG1 kappa light chain antibody that detects HIF PHD2 of mouse, rat, and human origin by western blotting (WB), immunoprecipitation (IP), immunofluorescence (IF), and enzyme-linked immunosorbent assay (ELISA). HIF PHD2 monoclonal antibody (H-8) is available in both non-conjugated and various conjugated forms, including agarose, horseradish peroxidase (HRP), phycoerythrin (PE), fluorescein isothiocyanate (FITC), and multiple Alexa Fluor® conjugates. HIF PHD2 functions as a prolyl hydroxylase, catalyzing post-translational modification of hypoxia-inducible factor (HIF) alpha subunits, which regulates gene expression in response to oxygen levels. This modification determines HIF-α protein stability and activity, influencing cellular responses to hypoxia. HIF PHD2 shows predominant expression in skeletal muscle, heart, kidney, and brain, serving as a key regulator of oxygen homeostasis. HIF PHD2′s ability to hydroxylate HIF-α subunits enables cellular adaptation to varying oxygen conditions, making HIF PHD2 essential for angiogenesis, metabolism, and cell survival. HIF PHD2′s role in stabilizing HIF-1α under normoxic conditions maintains cellular function and environmental response capabilities.

For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.

Alexa Fluor® is a trademark of Molecular Probes Inc., OR., USA

LI-COR® and Odyssey® are registered trademarks of LI-COR Biosciences

HIF PHD2 Antibody (H-8) References:

  1. Hypoxia-inducible factor-1 (HIF-1) promotes its degradation by induction of HIF-alpha-prolyl-4-hydroxylases.  |  Marxsen, JH., et al. 2004. Biochem J. 381: 761-7. PMID: 15104534
  2. Regulation of HIF prolyl hydroxylases by hypoxia-inducible factors.  |  Aprelikova, O., et al. 2004. J Cell Biochem. 92: 491-501. PMID: 15156561
  3. Differential function of the prolyl hydroxylases PHD1, PHD2, and PHD3 in the regulation of hypoxia-inducible factor.  |  Appelhoff, RJ., et al. 2004. J Biol Chem. 279: 38458-65. PMID: 15247232
  4. Regulation of the prolyl hydroxylase domain protein 2 (phd2/egln-1) gene: identification of a functional hypoxia-responsive element.  |  Metzen, E., et al. 2005. Biochem J. 387: 711-7. PMID: 15563275
  5. HIF-1-PHD2 axis controls expression of syndecan 4 in nucleus pulposus cells.  |  Fujita, N., et al. 2014. FASEB J. 28: 2455-65. PMID: 24558194
  6. Class I and IIa HDACs Mediate HIF-1α Stability Through PHD2-Dependent Mechanism, While HDAC6, a Class IIb Member, Promotes HIF-1α Transcriptional Activity in Nucleus Pulposus Cells of the Intervertebral Disc.  |  Schoepflin, ZR., et al. 2016. J Bone Miner Res. 31: 1287-99. PMID: 26765925
  7. Hepatic PHD2/HIF-1α axis is involved in postexercise systemic energy homeostasis.  |  Luo, B., et al. 2018. FASEB J. 32: 4670-4680. PMID: 29601782
  8. LRP5 Regulates HIF-1α Stability via Interaction with PHD2 in Ischemic Myocardium.  |  Ju, S., et al. 2021. Int J Mol Sci. 22: PMID: 34205318
  9. Adipose-Derived Mesenchymal Stem Cells Reprogram M1 Macrophage Metabolism via PHD2/HIF-1α Pathway in Colitis Mice.  |  Yuan, Y., et al. 2022. Front Immunol. 13: 859806. PMID: 35757749
  10. Adipocyte-derived lactate is a signalling metabolite that potentiates adipose macrophage inflammation via targeting PHD2.  |  Feng, T., et al. 2022. Nat Commun. 13: 5208. PMID: 36064857
  11. ETV2 regulating PHD2-HIF-1α axis controls metabolism reprogramming promotes vascularized bone regeneration.  |  Du, H., et al. 2024. Bioact Mater. 37: 222-238. PMID: 38549772
  12. Araloside A alleviates sepsis-induced acute lung injury via PHD2/HIF-1α in macrophages.  |  Ma, J., et al. 2024. Phytomedicine. 135: 156089. PMID: 39366158

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

HIF PHD2 Antibody (H-8)

sc-271835
200 µg/ml
$316.00

HIF PHD2 Antibody (H-8): m-IgG Fc BP-HRP Bundle

sc-527297
200 µg Ab; 10 µg BP
$354.00

HIF PHD2 Antibody (H-8): m-IgG1 BP-HRP Bundle

sc-532670
200 µg Ab; 20 µg BP
$354.00

HIF PHD2 Antibody (H-8) AC

sc-271835 AC
500 µg/ml, 25% agarose
$416.00

HIF PHD2 Antibody (H-8) HRP

sc-271835 HRP
200 µg/ml
$316.00

HIF PHD2 Antibody (H-8) FITC

sc-271835 FITC
200 µg/ml
$330.00

HIF PHD2 Antibody (H-8) PE

sc-271835 PE
200 µg/ml
$343.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 488

sc-271835 AF488
200 µg/ml
$357.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 546

sc-271835 AF546
200 µg/ml
$357.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 594

sc-271835 AF594
200 µg/ml
$357.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 647

sc-271835 AF647
200 µg/ml
$357.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 680

sc-271835 AF680
200 µg/ml
$357.00

HIF PHD2 Antibody (H-8) Alexa Fluor® 790

sc-271835 AF790
200 µg/ml
$357.00

对小鼠组织可以染色么?

Asked by: Meng Li
感谢您的提问。 HIF PHD2 Antibody (H-8):sc-271835可以通过免疫荧光方法检测小鼠样本PHD2。 Thank you for your inquiry. HIF PHD2 Antibody (H-8):sc-271835 is recommended for detection of PHD2 of mouse origin by IF.
Answered by: Technical Support 9
Date published: 2021-07-09

I need to use an antibody to detect the protein in samples of bovine origin. Do you know if sc-271835: HIF PHD2 (H-8) mouse monoclonal antibody will work?

Asked by: jenniferc
Please contact our Technical Service Department and we would be happy to perform sequence analysis and review our data to answer any questions you may have about additional species reactivity.
Answered by: Technical Support
Date published: 2017-03-06
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Rated 1 out of 5 by from No signal at allNo signal at all for WB in human lung fibroblasts.
Date published: 2017-12-20
Rated 4 out of 5 by from HIF PHD2我使用的是该抗体的小样试用装,以1:500稀释用作Western Blot实验,首次孵育时条带较清晰,第二第三次再使用时效果没那么好
Date published: 2017-11-23
Rated 5 out of 5 by from The antibody is really greatI was very experienced with the WB experimen, use HIF PHD2 antibody can see the specific bands in 46kDa.
Date published: 2017-10-25
Rated 5 out of 5 by from Work well in WB, human MSCsClear band can be detected by Western blot at 1:200 in human MSCs.
Date published: 2017-09-18
Rated 5 out of 5 by from 研究HIF1用来研究HIF1a的,试试 效果,后面准备染色试试,HIF1本身不好爆出来,这个应该还行,santa抗体染色一直都是不错的
Date published: 2017-05-04
Rated 5 out of 5 by from Nice featuresWe test this antibody on c2c12 cells and turbot cells in western blotting respectively, the first one is better than the other, though there is nonspecific bands.
Date published: 2017-03-17
Rated 5 out of 5 by from Immunoblotting with this antibodyI used this antibody to perform Western blotting and found that the product has good sensitivity and specificity, and will continue to be used in the future.
Date published: 2017-02-08
Rated 5 out of 5 by from The Best AntibodyMethods The cellular localization of HIF PHD2 antibody in mouse kidney tissue was detected by immunoblot and immunohistochemistry. We feel good about the antibody.
Date published: 2017-02-07
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HIF PHD2 Antibody (H-8) is rated 4.6 out of 5 by 13.
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