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FGF-23 Antibody (283507) [Unconjugated]

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FGF-23 was detected in perfusion fixed frozen sections of mouse brain (cortex) using Rat Anti-Mouse FGF-23 Monoclonal Antibody (Catalog # MAB26291) at 15 µg/mL overnight at 4 °C. Tissue was stained using the Anti-Rat ...read more
Immunofluorescence in the kidney of hemi-nephrectomized rats fed a high-P diet.FGF23 immunofluorescence (green). alpha SMA immunofluorescence (red). Merge: FGF23 (green), alpha SMA (red), and DAPI (blue). ×400: high ...read more
FGF23 expression in the partial nephrectomy rat model.(a) Serum FGF23 concentration. (b) FGF23 mRNA expression in the kidney. Sham group was used as a normalization control. (c) Western blot of FGF23 in the kidney. (d) ...read more
FGF23 expression in hemi-nephrectomized rats fed a high-P diet.(a) Serum FGF23 concentration. (b) FGF23 mRNA expression in the bone. NP sham group was used as a normalization control. (c) FGF23 mRNA expression in the ...read more
Immunohistochemistry and in situ hybridization in the kidney of partial nephrectomy rat model.FGF23: FGF23 immunohistochemistry (brown). Osteopontin: osteopontin immunohistochemistry (brown). ×200: high magnification. ...read more
Immunohistochemistry and in situ hybridization in the kidney of hemi-nephrectomized rats fed a high-P diet.FGF23: FGF23 immunohistochemistry (brown). Osteopontin: osteopontin immunohistochemistry (brown). ×200: high ...read more

Product Details

Summary
Reactivity MuSpecies Glossary
Applications IHC
Clone
283507
Clonality
Monoclonal
Host
Rat
Conjugate
Unconjugated
Concentration
LYOPH

Order Details

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Catalog# & Formulation Size Price
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FGF-23 Antibody (283507) [Unconjugated] Summary

Immunogen
Mouse myeloma cell line NS0-derived recombinant mouse FGF-23
Tyr25-Val251 (Arg179Gln)
Accession # Q9EPC2
Specificity
Detects mouse FGF-23 in direct ELISAs and Western blots. In direct ELISAs, this antibody shows approximately 50% cross-reactivity with recombinant human (rh) FGF-23. In Western blots, this antibody does not cross-react with rhFGF-3, -4, -5, -7, -9, -10, -11, -12, -13, -16, -17, -18, -19, acidic, basic, rmFGF-8b, -8c, -15, or -21.
Source
N/A
Isotype
IgG2a
Clonality
Monoclonal
Host
Rat
Gene
Fgf23
Purity Statement
Protein A or G purified from hybridoma culture supernatant
Innovator's Reward
Test in a species/application not listed above to receive a full credit towards a future purchase.

Applications/Dilutions

Dilutions
  • Immunohistochemistry 8-25 ug/mL
Publications
Read Publications using
MAB26291 in the following applications:

Packaging, Storage & Formulations

Storage
Use a manual defrost freezer and avoid repeated freeze-thaw cycles.
  • 12 months from date of receipt, -20 to -70 °C as supplied.
  • 1 month, 2 to 8 °C under sterile conditions after reconstitution.
  • 6 months, -20 to -70 °C under sterile conditions after reconstitution.
Buffer
Lyophilized from a 0.2 μm filtered solution in PBS with Trehalose. *Small pack size (SP) is supplied either lyophilized or as a 0.2 µm filtered solution in PBS.
Preservative
No Preservative
Concentration
LYOPH
Reconstitution Instructions
Reconstitute at 0.5 mg/mL in sterile PBS.

Notes

This product is produced by and ships from R&D Systems, Inc., a Bio-Techne brand.

Alternate Names for FGF-23 Antibody (283507) [Unconjugated]

  • ADHR
  • FGF23
  • FGF-23
  • fibroblast growth factor 23
  • HPDR2
  • HYPF
  • phosphatonin
  • PHPTC
  • tumor-derived hypophosphatemia inducing factor
  • Tumor-derived hypophosphatemia-inducing factor

Background

Fibroblast growth factor 23 (FGF-23) is a 30-32 kDa member of the FGF gene family. Based on its structure, it is further classified as an FGF19 subfamily member. This subfamily includes FGF-19, -21, and -23. Like all other FGF subfamilies, FGF-19 subfamily members contain a 120 amino acid (aa) core FGF domain that exhibits a beta -trefoil structure (1, 2). Unlike other FGF subfamilies, FGF-19 subfamily members exist as highly diffusible molecules that is attributed to poor ECM/heparin sulfate binding (3-6). The cDNA for mouse FGF-23 predicts a 251 aa polypeptide that contains a 24 aa signal sequence and a 227 aa mature region (7). Mature mouse FGF-23 shows 72% aa identity to human FGF-23 (8). The FGF-19 subfamily shares an unusual receptor configuration. The standard model for FGF signaling requires an FGF:FGF R:heparin sulfate complex. Given FGF-23’s minimal association with heparin, a substitute termed ( alpha -) Klotho has evolved that serves the same function. Although FGF-23 binds to the widely expressed “c” isoforms of FGF R1 and 3 plus FGF R4, Klotho has a restricted distribution that limits FGF-23 activity (10-12). It should be noted that heparin-dependency has been reported for FGF-19 signaling, and this observation may extend to FGF-23 (13). The FGF-19 subfamily is considered endocrine in nature. All three subfamily members impact some aspect of metabolism and all three are induced by a nuclear receptor heterodimer that includes the retinoid X receptor (14-16). FGF-23 is considered a phosphatonin; that is, a molecule that reduces circulating plasma phosphate. It is produced by osteocytes and osteoblasts in response to high circulating phosphate levels, elevated parathyroid hormone that induces hypercalcemia, and circulatory volume loading. Upon binding to FGF-23 receptors on renal proximal tubular epithelium, two basic changes are seen. First, the enzyme responsible for generating the active form of vitamin D is suppressed, resulting in decreased levels of bioactive vitamin D. Since vitamin D promotes intestinal phosphate absorption, plasma phosphate declines. Second, the transporters responsible for phosphate resorption on renal epithelium are down regulated, resulting in decreased uptake from urine and again a decline in blood phosphorus (17, 18).

  1. Itoh, N. and D.M. Ornitz (2004) Trends Genet. 20:563. 
  2. Mohammadi, M. et al. (2005) Cytokine Growth Factor Rev. 16:107.
  3. Fukumoto, S. (2007) Endocr. J. Sep 14; [Epub ahead of print].
  4. Huang, X. et al. (2006) Mol. Carcinog. 45:934. 
  5. Goetz, R. et al. (2007) Mol. Cell. Biol. 27:3417.
  6. Harmer, N.J. et al. (2004) Biochemistry 43:629.
  7. Yamashita, T. et al. (2000) Biochem. Biophys. Res. Commun. 277:494.
  8. Shimada, T. et al. (2001) Proc. Natl. Acad. Sci. USA 98:6500.
  9. Kato, K. et al. (2006) J. Biol. Chem. 281:18370.
  10. Zhang, X. et al. (2006) J. Biol. Chem. 281:15694.
  11. Urakawa, I. et al. (2006) Nature 444:770.
  12. Hurosu, H. et al. (2006) J. Biol. Chem. 281:6120.
  13. Wu, X. et al. (2007) J. Biol. Chem. 282:29069.
  14. Moore, D.D. (2007) Science 316:1436.
  15. Ogawa, Y. et al. (2007) Proc. Natl. Acad. Sci. USA 104:7432.
  16. Kurosu, H. et al. (2007) J. Biol. Chem. 282:26687.
  17. Razzaque, M.S. and B. Lanske (2007) J. Endocrinol. 194:1.
  18. Liu, S. et al. (2007) Curr. Opin. Nephrol. Hypertens. 16:329.

Limitations

This product is for research use only and is not approved for use in humans or in clinical diagnosis. Primary Antibodies are guaranteed for 1 year from date of receipt.

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Publications for FGF-23 Antibody (MAB26291)(22)

We have publications tested in 3 confirmed species: Human, Mouse, Rat.

We have publications tested in 5 applications: ICC, IHC, IHC-Fr, IHC-P, Western Blot.


Filter By Application
ICC
(1)
IHC
(5)
IHC-Fr
(1)
IHC-P
(3)
Western Blot
(1)
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Human
(1)
Mouse
(7)
Rat
(3)
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Showing Publications 1 - 10 of 22. Show All 22 Publications.
Publications using MAB26291 Applications Species
Aobulikasimu, A;Liu, T;Piao, J;Sato, S;Ochi, H;Okawa, A;Tsuji, K;Asou, Y; SIRT6-PAI-1 axis is a promising therapeutic target in aging-related bone metabolic disruption Scientific reports 2023-05-17 [PMID: 37198221] (IHC, Mouse) IHC Mouse
Tomoka Hasegawa, Shin Tokunaga, Tomomaya Yamamoto, Mariko Sakai, Hiromi Hongo, Takehisa Kawata et al. Evocalcet rescues secondary hyperparathyroidism-driven cortical porosity in chronic kidney disease male rats Endocrinology 2023-02-11 [PMID: 36718587]
MM Hurley, JD Coffin, T Doetschman, C Valera, K Clarke, L Xiao FGF receptor inhibitor BGJ398 partially rescues osteoarthritis-like phenotype in older high molecular weight FGF2 transgenic mice via multiple mechanisms Scientific Reports, 2022-09-24;12(1):15968. 2022-09-24 [PMID: 36153352] (IHC, Mouse) IHC Mouse
M Dixit, S Duran-Orti, G Yildirim, SB Poudel, LD Louis, A Bartke, MB Schaffler, JJ Kopchick, S Yakar Induction of somatopause in adult mice compromises bone morphology and exacerbates bone loss during aging Aging Cell, 2021-11-23;0(0):e13505. 2021-11-23 [PMID: 34811875] (IHC, Mouse) IHC Mouse
Grethel Millington, Johnny Joseph, Liping Xiao, Anushree Vijaykumar, Mina Mina, Marja M. Hurley Fibroblast Growth Factor 2 High Molecular Weight Isoforms in Dentoalveolar Mineralization Calcified Tissue International 2022-01-01 [PMID: 34245331]
Stan R. Ursem, Charlene Diepenbroek, Vesna Bacic, Unga A. Unmehopa, Leslie Eggels, Clarissa M. Maya‐Monteiro et al. Localization of fibroblast growth factor 23 protein in the rat hypothalamus European Journal of Neuroscience 2021-08-01 [PMID: 34184338]
M Kawai, S Kinoshita, K Ozono, T Michigami Lack of PTEN in osteocytes increases circulating phosphate concentrations by decreasing intact fibroblast growth factor 23 levels Scientific Reports, 2020-12-09;10(1):21501. 2020-12-09 [PMID: 33299044] (IHC, Rat) IHC Rat
Ann M. Laszczyk, Dailey Nettles, Tate A. Pollock, Stephanie Fox, Melissa L. Garcia, Jing Wang et al. FGF-23 Deficiency Impairs Hippocampal-Dependent Cognitive Function eNeuro 2019-03-07 [PMID: 30911673]
Patience Meo Burt, Liping Xiao, Thomas Doetschman, Marja M. Hurley Ablation of low‐molecular‐weight FGF2 isoform accelerates murine osteoarthritis while loss of high‐molecular‐weight FGF2 isoforms offers protection Journal of Cellular Physiology 2019-04-01 [PMID: 30144364]
H Sugiura, A Matsushita, M Futaya, A Teraoka, KI Akiyama, N Usui, N Nagano, K Nitta, K Tsuchiya Fibroblast growth factor 23 is upregulated in the kidney in a chronic kidney disease rat model PLoS ONE, 2018-03-08;13(3):e0191706. 2018-03-08 [PMID: 29518087] (Western Blot, Rat) Western Blot Rat
Show All 22 Publications.

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Bioinformatics

Gene Symbol Fgf23
Uniprot