3443-45-6
Chemical Structure
1-Pyrenebutyric acid
- CAS No.: 3443-45-6
- Formula:C20H16O2
- Molecular Weight:288.35
IUPAC Name: 4-(pyren-1-yl)butanoic acid
InChIKey: QXYRRCOJHNZVDJ-UHFFFAOYSA-N
SMILES: C1=CC2=C3C(=C1)C=CC4=C(CCCC(=O)O)C=CC(=C43)C=C2
Biological Activity: 1-Pyrenebutyric acid is a fluorescence probe whose fluorescence lifetime depends on local oxygen and free radical concentrations. 1-Pyrenebutyric acid is used in fluorescence determination of DNA. 1-Pyrenebutyric acid can be used as a linker for biomolecules to form a self-assembled monolayer on grapheme. 1-Pyrenebutyric acid can also be used for the measurement of free radicals in solution and in living cells[1][2][3][4].
| Cat. No. | Product Name | Purity | Description | Pricing | |||||||||||||||||||
|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|---|
|
|
1-Pyrenebutyric acid | 98.89% | 1-Pyrenebutyric acid is a fluorescence probe whose fluorescence lifetime depends on local oxygen and free radical concentrations. 1-Pyrenebutyric acid is used in fluorescence determination of DNA. 1-Pyrenebutyric acid can be used as a linker for biomolecules to form a self-assembled monolayer on grapheme. 1-Pyrenebutyric acid can also be used for the measurement of free radicals in solution and in living cells. | ||||||||||||||||||||
|
loading...
/
|
|||||||||||||||||||||||
- [1]. Wang L, et, al. Fluorescence determination of DNA with 1-pyrenebutyric acid nanoparticles coated with beta-cyclodextrin as a fluorescence probe. Spectrochim Acta A Mol Biomol Spectrosc. 2005 Apr;61(6):1201-5. [Content Brief]
- [2]. Hinnemo M, et, al. On Monolayer Formation of Pyrenebutyric Acid on Graphene. Langmuir. 2017 Apr 18;33(15):3588-3593. [Content Brief]
- [3]. Rharass, T., et al., (2006). Variation of 1-pyrenebutyric acid fluorescence lifetime in single living cells treated with molecules increasing or decreasing reactive oxygen species levels. Analytical biochemistry, 357(1), 1–8. [Content Brief]
- [4]. Moné, Y., et al., (2011). An example of molecular co-evolution: reactive oxygen species (ROS) and ROS scavenger levels in Schistosoma mansoni/Biomphalaria glabrata interactions. International journal for parasitology, 41(7), 721–730. [Content Brief]
Keywords