Sensitive and selective analysis of coenzyme Q10 in human serum by negative APCI LC-MS
Literature Information
Gregers Hansen, Peter Christensen, Erik Tüchsen, Torben Lund
Two new sensitive and selective LC-MS methods have been developed for the quantification of the total coenzyme Q10 concentration in human blood serum. The sensitivity of the methods is based on the very efficient formation of the radical anions of CoQ10 [M−˙] by negative atmospheric pressure ionisation, APCI(−). The mass detection of the [M−˙] ions, m/z = 862.6, was performed either in selective ion monitoring (SIM) or in MS2 mode (m/z = 862.6 → m/z = 847.6) using an LCQ-deca ion-trap mass spectrometer. Two standard serum samples with medium (0.73 µg ml−1) and high (1.96 µg ml−1) total CoQ10 concentrations were analysed by LC-APCI(−)-SIM and LC-APCI(−)-MS2 and the results compared with a HPLC literature procedure with electrochemical detection (ECD). Both the LC-MS methods were shown to be more selective and with comparable or better sensitivity than the HPLC-ECD method. The LC-MS-SIM and LC-MS2 chromatograms of the medium concentration sample showed CoQ10 signal to noise ratios of 25 and 625, respectively. In addition, a simple and fast serum pre-treatment procedure was developed, in which the serum CoQ10H2 content was quantitatively oxidised quantitatively to CoQ10 in less than 15 min by 1,4-benzoquinone.
Recommended Journals
Related Literature
Privileged hydration sites in aromatic side chains: effect on conformational equilibrium
Fernando Pflüger, Manuel Dauchez
DOI: 10.1039/C7CP04685E
Bandgap engineering by cationic disorder: case study on AgBiS2
Francesc Viñes, Francesc Illas
DOI: 10.1039/C7CP05118B
Quantum effect enhanced magnetism of C-doped phosphorene nanoribbons: first-principles calculations
Chunyao Niu, Yuan-Yao He, Jianjun Wang, Zhili Zhu, Liwei Zhang
DOI: 10.1039/C7CP05277D
Thermoelectric properties of Se and Zn/Cd/Sn double substituted Co4Sb12 skutterudite compounds
Karthikeyan N., Sivaprasad Ghanta, Jaiganesh G., Anbarasu V., Partha Pratim Jana, Sivakumar K.
DOI: 10.1039/C7CP04634K
Spin labelling for integrative structure modelling: a case study of the polypyrimidine-tract binding protein 1 domains in complexes with short RNAs
Christoph Gmeiner, Georg Dorn, Frédéric H. T. Allain, Gunnar Jeschke, Maxim Yulikov
DOI: 10.1039/C7CP05822E
Charge transport, interfacial interactions and synergistic mechanisms in BiNbO4/MWO4 (M = Zn and Cd) heterostructures for hydrogen production: insights from a DFT+U study
Francis Opoku, Krishna Kuben Govender, Cornelia Gertina Catharina Elizabeth van Sittert, Penny Poomani Govender
DOI: 10.1039/C7CP04440B
Dynamics theory for molecular liquids based on an interaction site model
Kento Kasahara, Hirofumi Sato
DOI: 10.1039/C7CP05423H
The influence of particle size of amino-functionalized MCM-41 silicas on CO2 adsorption
G. Gatti, C. Vittoni, D. Costenaro, G. Paul, E. Mangano, S. Brandani, L. Marchese
DOI: 10.1039/C7CP05177H
Exploiting a single intramolecular conformational switching Ni-TPP molecule to probe charge transfer dynamics at the nanoscale on bare Si(100)-2 × 1
Hatem Labidi, Jerzy Leszczynski, Damien Riedel
DOI: 10.1039/C7CP05906J
You might also like
How should waste containing 2-Ethyl-4-Methyl-1H-Imidazole-5-Carbaldehyde (CAS: 88634-80-4) be handled?
Waste containing 2-Ethyl-4-Methyl-1H-Imidazole-5-Carbaldehyde (CAS: 88634-80-4) ...
What industries use Triethoxy(octyl)silane (CAS: 1385031-14-0)?
Triethoxy(octyl)silane (CAS: 1385031-14-0) is widely used in the pharmaceuticals...
Are there alternatives to 3-iodo-7-nitro-1H-indazole (CAS: 864724-64-1) in synthesis?
Several alternatives to 3-iodo-7-nitro-1H-indazole (CAS: 864724-64-1) exist in t...
Are there alternatives to Benzene, bis[(trimethoxysilyl)ethyl] (CAS: 266317-71-9) in synthesis?
Yes, there are alternatives to Benzene, bis[(trimethoxysilyl)ethyl] (CAS: 266317...
Is Isothiazole-3-carbonitrile (CAS: 1452-17-1) safe?
Isothiazole-3-carbonitrile (CAS: 1452-17-1) is generally considered safe when us...
Is (3-Chlorophenyl)methanol (CAS: 873-63-2) safe?
(3-Chlorophenyl)methanol (CAS: 873-63-2) is considered low to moderately toxic. ...
How is (2S,3S)-2-Hydroxy-3-({[(2-methyl-2-propanyl)oxy]carbonyl}amino)-3-(2-naphthyl)propanoic acid (CAS: 959583-98-3) typically synthesized?
(2S,3S)-2-Hydroxy-3-({[(2-methyl-2-propanyl)oxy]carbonyl}amino)-3-(2-naphthyl)pr...
What precautions should be taken when handling Methyl 2-(bromomethyl)-5-methoxybenzoate (CAS: 788081-99-2)?
Proper handling of methyl 2-(bromomethyl)-5-methoxybenzoate requires the use of ...
What is 6,8-Dibromoimidazo[1,2-a]pyridine-2-carboxylic acid (CAS: 904805-36-3)?
6,8-Dibromoimidazo[1,2-a]pyridine-2-carboxylic acid (CAS: 904805-36-3) is an aro...
Is 3-Amino-5-bromo-2-pyridinecarbonitrile (CAS: 573675-27-1) safe?
3-Amino-5-bromo-2-pyridinecarbonitrile is considered safe when handled under pro...
Source Journal
Analyst

Analyst publishes analytical and bioanalytical research that reports premier fundamental discoveries and inventions, and the applications of those discoveries, unconfined by traditional discipline barriers.










![L-Threonine, N-[[4,7,10-tris(carboxymethyl)-1,4,7,10-tetraazacyclododec-1-yl]acetyl]-D-phenylalanyl-L-cysteinyl-L-tyrosyl-D-tryptophyl-L-lysyl-L-threonyl-L-cysteinyl-, cyclic (2→7)-disulfide, acetate (salt) (9CI) structure L-Threonine, N-[[4,7,10-tris(carboxymethyl)-1,4,7,10-tetraazacyclododec-1-yl]acetyl]-D-phenylalanyl-L-cysteinyl-L-tyrosyl-D-tryptophyl-L-lysyl-L-threonyl-L-cysteinyl-, cyclic (2→7)-disulfide, acetate (salt) (9CI) structure](https://static.chemtradehub.com/structs/177/177943-89-4-6312.webp)
![2,2'-[(Abieta-8,11,13-trien-18-ylimino)bis(2,1-ethanediyloxy)]diethanol structure 2,2'-[(Abieta-8,11,13-trien-18-ylimino)bis(2,1-ethanediyloxy)]diethanol structure](https://static.chemtradehub.com/structs/513/51344-62-8-8518.webp)


