Date published: 2025-10-19

1-800-457-3801

SCBT Portrait Logo
Seach Input

1-Pyrenebutyric hydrazide (CAS 55486-13-0)

0.0(0)
Write a reviewAsk a question

Alternate Names:
4-(1-Pyrenyl)butyric hydrazide
Application:
1-Pyrenebutyric hydrazide is a fluorescent labeling reagent
CAS Number:
55486-13-0
Molecular Weight:
302.37
Molecular Formula:
C20H18N2O
For Research Use Only. Not Intended for Diagnostic or Therapeutic Use.
* Refer to Certificate of Analysis for lot specific data.

QUICK LINKS

1-Pyrenebutyric hydrazide is in the fields of fluorescence spectroscopy and molecular probes, where its unique photophysical properties are exploited. 1-Pyrenebutyric hydrazide is used to study the dynamics and interactions of biomolecules, as it can be attached to proteins, nucleic acids, or lipids to serve as a fluorescent tag. Value 1-Pyrenebutyric hydrazide for its ability to provide insights into cellular processes through fluorescence resonance energy transfer (FRET) studies, which help in understanding molecular distances and interactions within cells. 1-Pyrenebutyric hydrazide is utilized in developing advanced optical materials, where its fluorescence properties can enhance the detection sensitivity of various biological and chemical systems. The study of 1-Pyrenebutyric hydrazide also contributes to the field of environmental monitoring, where it aids in the detection of pollutants through fluorescence-based sensors.


1-Pyrenebutyric hydrazide (CAS 55486-13-0) References

  1. Diagnosis of methylmalonic acidemia from dried blood spots by HPLC and intramolecular-excimer fluorescence derivatization.  |  Al-Dirbashi, OY., et al. 2005. Clin Chem. 51: 235-7. PMID: 15514093
  2. Quantification of glutaric and 3-hydroxyglutaric acids in urine of glutaric acidemia type I patients by HPLC with intramolecular excimer-forming fluorescence derivatization.  |  Al-Dirbashi, OY., et al. 2005. Clin Chim Acta. 359: 179-88. PMID: 15978564
  3. Highly sensitive fluorescent method for the detection of cholesterol aldehydes formed by ozone and singlet molecular oxygen.  |  Mansano, FV., et al. 2010. Anal Chem. 82: 6775-81. PMID: 20704366
  4. Graphene based soft nanoreactors for facile 'one-step' glycan enrichment and derivatization for MALDI-TOF-MS analysis.  |  Bai, H., et al. 2013. Talanta. 117: 1-7. PMID: 24209301
  5. Mass spectrometry-based tag and its application to high efficient peptide analysis - A review.  |  Qiao, X., et al. 2014. Talanta. 126: 91-102. PMID: 24881538
  6. Carboxyl group (-CO2 H) functionalized coordination polymer nanoparticles as efficient platforms for drug delivery.  |  Novio, F., et al. 2014. Chemistry. 20: 15443-50. PMID: 25284328
  7. Singlet Oxygen-Induced Furan Oxidation for Site-Specific and Chemoselective Peptide Ligation.  |  Antonatou, E., et al. 2016. Chemistry. 22: 8457-61. PMID: 27113264
  8. Photosensitized Membrane Permeabilization Requires Contact-Dependent Reactions between Photosensitizer and Lipids.  |  Bacellar, IOL., et al. 2018. J Am Chem Soc. 140: 9606-9615. PMID: 29989809
  9. Mechanisms of Photosensitized Lipid Oxidation and Membrane Permeabilization.  |  Bacellar, IOL. and Baptista, MS. 2019. ACS Omega. 4: 21636-21646. PMID: 31891041
  10. A dual-mode reactive matrix for sensitive and quantitative analysis of carbohydrates by MALDI-TOF MS.  |  Lin, X., et al. 2021. Talanta. 235: 122792. PMID: 34517650
  11. Straightforward Analysis of Sulfated Glycosaminoglycans by MALDI-TOF Mass Spectrometry from Biological Samples.  |  Krüger, L., et al. 2022. Biology (Basel). 11: PMID: 35453706
  12. The Chemistry of P=N-P=X (X=S, O, NR) Linkages for the Synthesis of Dendritic Structures.  |  Maraval, V., et al. 2023. Chempluschem. 88: e202300064. PMID: 36942796
  13. Polysaccharide BAP1 of Bifidobacterium adolescentis CCDM 368 is a biologically active molecule with immunomodulatory properties.  |  Pacyga-Prus, K., et al. 2023. Carbohydr Polym. 315: 120980. PMID: 37230638

Ordering Information

Product NameCatalog #UNITPriceQtyFAVORITES

1-Pyrenebutyric hydrazide, 100 mg

sc-208692
100 mg
$250.00