Biomedical Engineering Reference
In-Depth Information
55. Penning TM, Lee S, Jin Y, Gutierrez A, Blair IA (2010) Liquid chromatography-mass
spectrometry (LC-MS) of teroid hormone metabolites and its applications. J Steroid Biochem
Mol Biol 121:546-555
56. Johnson DW (2005) Ketosteroid profiling using Girard T derivatives and electrospray ioniza-
tion tandem mass spectrometry: direct plasma analysis of androstenedione, 17-hydroxypro-
gesterone and cortisol. Rapid Commun Mass Spectrom 19:193-200
57. Hala D, Overturf MD, Petersen LH, Huggett DB (2011) Quantification of 2-hydrazinopyri-
dine derivatized steroid hormones in fathead minnow (pimephales promelas) blood plasma
using LC-ESI+/MS/MS. J Chromatogr B 879:591-598
58. Griffiths WJ, Liu S, Alvelius G, Sjovall J (2003) Derivatization for the characterisation of
neutral oxosteroids by electrospray and matrix-assisted laser desporption/ionization tandem
mass spectrometry: the Girard P derivatives. Rapid Commun Mass Spectrom 17:924-935
59. Arai S, Miyashiro Y, Shibata Y, Kashiwagi B, Tomaru Y, Kobayashi M, Watanabe Y, Honma
S, Suzuki K (2010) New quantification method for estradioal in the prostatic tissues of nenign
prostatic hyperplasia using liquid chromatogrophy-dandem mass spectromentry. Steroids
75:13-19
60. Higashi T, Takayama N, Kyutoku M, Shimada K, Kohb E, Namiki M (2006) Liquid
chromatography-mass spectrometric assay of androstenediol in prostatic tissue: influence
of androgen deprivation therapy on its level. Steroids 71:1007-1013
61. Lin Y, Chen C, Wang G (2007) Analysis of steroid estrogens in water using liquid chroma-
tography/tandem mass spectrometry with chemical derivatizations. Rapid Commun Mass
Spectrom 21:1973-1983
62. Xu L, Spink DC (2008) Analysis of steroidal estrogens as pyridine-3-sulfonyl derivatives
by liquid chromatography electrospray tandem mass spectrometry. Anal Biochem
375:105-114
63. You J, Zhao H, Sun Z, Suo Y, Chen G (2009) 10-Ethyl-acridine-2-sulfonyl chloride: a new
derivatization agent for enhancement of atmospheric pressure chemical ionization of estro-
gens in urine. Chromatographia 70:45-55
64. Yamashita K, Okuyama M, Watanabe Y, Honma S, Kobayashi S, Numazawa M (2007)
Highly sensitive determination of estrone and estradiol in human serum by liquid chromatog-
raphy-electrospray ionization tandem mass spectrometry. Steroids 72:819-827
65. Giton F, Caron P, Bérubé R, Bélanger A, Barbier O, Fiet J (2010) Plasma estrone sulfate
assay in men: comparison of radioimmunoassay, mass spectrometry coupled to gas chroma-
tography (GC-MS), and liquid chromatography-tandem mass spectrometry (LC-MS/MS).
Clin Chim Acta 411:1208-1213
66. Mitamura K, Yatera M, Shimada K (2000) Studies on neurosteroids Part XIII. Characterization
of catechol estrogens in rat brains using liquid chromatography-mass spectrometry-mass
spectrometry. Analyst 125:811-814
67. Yamashita K, Masuda A, Hoshino Y, Komatsu S, Numazawa M (2010) Assay of labile estro-
gen o -quinones, potent carcinogenic molecular species, by high performance liquid chroma-
tography-electrospray ionization tandem mass spectrometry with phenazine derivatization.
J Steroid Biochem Mol Biol 119:141-148
68. Díaz-Cruz MS, López de Alda MJ, López R, Barceló D (2003) Determination of estrogens
and progestogens by mass spectrometry techniques (GC/MS, LC/MS and LC/MS/MS).
J Mass Spectrom 38:917-923
69. Cheng C, Hou J, Wang S, Xu B, Liu S, Yan Z (2011) Development and validation of an
LC-MS/MS method for determination of fifteen estrogens and metabolites in human serum.
In: Pittsburgh conference, Atlanta, GA, 18 March 2011
70. Nordstrom A, O'Maille G, Qin C, Siuzdak G (2006) Nonlinear data alignment for UPLC-MS
and HPLC-MS based metabolomics: quantitative analysis of endogenous and exogenous
metabolites in human serum. Anal Chem 78:3289-3295
71. Novakoca L, Matysova L, Solich P (2006) Advantages of application of UPLC in pharma-
ceutical analysis. Talanta 68:908-918
Search WWH ::




Custom Search