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Fluorescein DHPE

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Physical properties
Molecular weight1182.55
SolventDMSO
Spectral properties
Absorbance (nm)487
Correction Factor (260 nm)0.32
Correction Factor (280 nm)0.35
Extinction coefficient (cm -1 M -1)800001
Excitation (nm)498
Emission (nm)517
Quantum yield0.79001, 0.952
Storage, safety and handling
H-phraseH301, H311, H331
Hazard symbolT
Intended useResearch Use Only (RUO)
R-phraseR23, R24, R25
StorageFreeze (< -15 °C); Minimize light exposure
UNSPSC12352200

OverviewpdfSDSpdfProtocol


See also: Fluoresceins
Molecular weight
1182.55
Absorbance (nm)
487
Correction Factor (260 nm)
0.32
Correction Factor (280 nm)
0.35
Extinction coefficient (cm -1 M -1)
800001
Excitation (nm)
498
Emission (nm)
517
Quantum yield
0.79001, 0.952
Fluorescein DHPE is a phospholipid that is labeled on the head group with the bright, green-fluorescent fluorescein dye. Because of fluorescein's photolability, fluorescein DHPE is a useful reagent for measuring lateral diffusion in membranes using fluorescence photobleaching recovery methods. Fluorescein DHPE has also been used in conjunction with polyclonal anti-fluorescein dye antibody to prepare colloidal gold probes for SPT diffusion measurements in supported phospholipid bilayers and in keratocyte plasma membranes.

Calculators


Common stock solution preparation

Table 1. Volume of DMSO needed to reconstitute specific mass of Fluorescein DHPE to given concentration. Note that volume is only for preparing stock solution. Refer to sample experimental protocol for appropriate experimental/physiological buffers.

0.1 mg0.5 mg1 mg5 mg10 mg
1 mM84.563 µL422.815 µL845.63 µL4.228 mL8.456 mL
5 mM16.913 µL84.563 µL169.126 µL845.63 µL1.691 mL
10 mM8.456 µL42.282 µL84.563 µL422.815 µL845.63 µL

Molarity calculator

Enter any two values (mass, volume, concentration) to calculate the third.

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Spectrum


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spectrum

Spectral properties

Absorbance (nm)487
Correction Factor (260 nm)0.32
Correction Factor (280 nm)0.35
Extinction coefficient (cm -1 M -1)800001
Excitation (nm)498
Emission (nm)517
Quantum yield0.79001, 0.952

Product Family


NameExcitation (nm)Emission (nm)Extinction coefficient (cm -1 M -1)Quantum yieldCorrection Factor (260 nm)Correction Factor (280 nm)
Fluorescein biotin4985178000010.79001, 0.9520.320.35
Fluorescein dicaprylate [Fluorescein dioctanoate]4985178000010.79001, 0.9520.320.35
TRITC-DHPE544570100000-0.270.34
Fluorescein aldehyde [5-FAM aldehyde]49351783000-0.320.178
Fluorescein Tyramide4985178000010.79001, 0.9520.320.35
OG488 DHPE49852676000-0.310.12

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Citations


View all 5 citations: Citation Explorer
Highly Robust Multilamellar Lipid Vesicles Generated through Intervesicular Self-assembly Mediated by Hydrolyzed Collagen Peptides
Authors: Koo, Bon Il and Rahman, Rafia Tasnim and Jang, Jihui and Lee, Dong Jae and Lee, Jun Bae and Nam, Yoon Sung
Journal: (2023)
Activation of Nedd4L Ubiquitin Ligase by FCHO2-generated Membrane Curvature
Authors: Sakamoto, Yasuhisa and Uezu, Akiyoshi and Kikuchi, Koji and Suetsugu, Shiro and Nakanishi, Hiroyuki
Journal: bioRxiv (2022)
DNA mechanotechnology reveals that integrin receptors apply pN forces in podosomes on fluid substrates
Authors: Glazier, Roxanne and Brockman, Joshua M and Bartle, Emily and Mattheyses, Alexa L and Destaing, Olivier and Salaita, Khalid
Journal: Nature Communications (2019): 1--13
Development of PEGylated aspartic acid-modified liposome as a bone-targeting carrier for the delivery of paclitaxel and treatment of bone metastasis
Authors: Yamashita, Shugo and Katsumi, Hidemasa and Hibino, Nozomi and Isobe, Yugo and Yagi, Yumiko and Tanaka, Yuka and Yamada, Saki and Naito, Chihiro and Yamamoto, Akira
Journal: Biomaterials (2018): 74--85
Development of PEGylated aspartic acid-modified liposome as a bone-targeting carrier for the delivery of paclitaxel and treatment of bone metastasis
Authors: Yamashita, Shugo and Katsumi, Hidemasa and Hibino, Nozomi and Isobe, Yugo and Yagi, Yumiko and Tanaka, Yuka and Yamada, Saki and Naito, Chihiro and Yamamoto, Akira
Journal: Biomaterials (2017)

References


View all 27 references: Citation Explorer
Permeabilization assay for antimicrobial peptides based on pore-spanning lipid membranes on nanoporous alumina
Authors: Neubacher H, Mey I, Carnarius C, Lazzara TD, Steinem C.
Journal: Langmuir (2014): 4767
Membrane order parameters for interdigitated lipid bilayers measured via polarized total-internal-reflection fluorescence microscopy
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Journal: Biochim Biophys Acta (2014): 2861
Mesoporous gold and palladium nanoleaves from liquid-liquid interface: enhanced catalytic activity of the palladium analogue toward hydrazine-assisted room-temperature 4-nitrophenol reduction
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Journal: ACS Appl Mater Interfaces (2014): 9134
Phase segregation of polymerizable lipids to construct filters for separating lipid-membrane-embedded species
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Journal: Biomicrofluidics (2014): 52005
Lipid reassembly in asymmetric Langmuir-Blodgett/Langmuir-Schaeffer bilayers
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Journal: Langmuir (2013): 221
Coupling supported lipid bilayer electrophoresis with matrix-assisted laser desorption/ionization-mass spectrometry imaging
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Journal: Anal Chem (2013): 6047
Calcein release behavior from liposomal bilayer; influence of physicochemical/mechanical/structural properties of lipids
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Journal: Biochimie (2013): 2018
In vivo digestion of bovine milk fat globules: effect of processing and interfacial structural changes. I. Gastric digestion
Authors: Gallier S, Cui J, Olson TD, Rutherfurd SM, Ye A, Moughan PJ, Singh H.
Journal: Food Chem (2013): 3273
Rapid detection of several foodborne pathogens by F0F1-ATPase molecular motor biosensor
Authors: Zhang J, Li Z, Zhang H, Wang J, Liu Y, Chen G.
Journal: J Microbiol Methods (2013): 37
Formation and diffusivity characterization of supported lipid bilayers with complex lipid compositions
Authors: Simonsson L, Hook F.
Journal: Langmuir (2012): 10528