Schuh K, Haussler S, Sadri H, Prehn C, Lintelmann J, Adamski J, Koch C, Frieten D, Ghaffari MH, Dusel G, Sauerwein H. Blood and adipose tissue steroid metabolomics and mRNA expression of steroidogenic enzymes in periparturient dairy cows differing in body condition. Sci Rep. 2022;12(1):2297.
Kinoshita T, Honma S, Shibata Y, Yamashita K, Watanabe Y, Maekubo H, Okuyama M, Takashima A, Takeshita N. An innovative LC-MS/MS-based method for determining CYP 17 and CYP 19 activity in the adipose tissue of pre- and postmenopausal and ovariectomized women using 13C-labeled steroid substrates. J Clin Endocr Metab. 2014;99(4):1339–47.
Miller WL. Disorders in the initial steps of steroid hormone synthesis. J Steroid Biochem Mol Biol. 2017;165:18–37.
Benagiano M, Bianchi P, D’Elios MM, Brosens I, Benagiano G. Autoimmune diseases: Role of steroid hormones. Best Pract Res Cl Ob. 2019;60:24–34.
Miller WL. Molecular biology of steroid hormone synthesis. Endocr Rev. 1988;9(3):295–318.
Wudy SA, Schuler G, Sanchez-Guijo A, Hartmann MF. The art of measuring steroids: Principles and practice of current hormonal steroid analysis. J Steroid Biochem Mol Biol. 2018;179:88–103.
Yang B, Tu M, Wang S, Ma W, Zhu Y, Ma Z, Li X. Neonicotinoid insecticides in plant-derived foodstuffs: a review of separation and determination methods based on liquid chromatography. Food Chem. 2024;444:138695–138695.
Li X, Li H, Ma W, Guo Z, Li X, Song S, Tang H, Li X, Zhang Q. Development of precise GC-EI-MS method to determine the residual fipronil and its metabolites in chicken egg. Food Chem. 2019;281:85–90.
Gao W, Stalder T, Kirschbaum C. Quantitative analysis of estradiol and six other steroid hormones in human saliva using a high throughput liquid chromatography–tandem mass spectrometry assay. Talanta. 2015;143:353–8.
Taylor DR, Ghataore L, Couchman L, Vincent RP, Whitelaw B, Lewis D, Diaz-Cano S, Galata G, Schulte KM, Aylwin S, Taylor NF. A 13-steroid serum panel based on LC-MS/MS: use in detection of adrenocortical carcinoma. Clin Chem. 2017;63(12):1836–46.
Keevil BG. LC–MS/MS analysis of steroids in the clinical laboratory. Clin Biochem. 2016;49(13–14):989–97.
Li J, Xu A, Xue J, Qian W, Xu P, Hu Z, Chen C, Wu C. Development and validation of a deep eutectic solvent-assisted liquid-liquid extraction method for simultaneous quantification of six steroid hormones in serum by liquid chromatography-tandem mass spectrometry. J Chromatogr A. 2023;1710: 464413.
Li X, Li H, Ma W, Guo Z, Li X, Li X, Zhang Q. Determination of patulin in apple juice by single-drop liquid-liquid-liquid microextraction coupled with liquid chromatography-mass spectrometry. Food Chem. 2018;257:1–6.
An J, Rahn KL, Anderson JL. Headspace single drop microextraction versus dispersive liquid-liquid microextraction using magnetic ionic liquid extraction solvents. Talanta. 2017;167:268–78.
Sharifi V, Abbasi A, Nosrati A. Application of hollow fiber liquid phase microextraction and dispersive liquid-liquid microextraction techniques in analytical toxicology. J Food Drug Anal. 2016;24(2):264–76.
Jain R, Singh R. Applications of dispersive liquid–liquid micro-extraction in forensic toxicology. TrAC Trends Anal Chem. 2016;75:227–37.
Wang Q, Chen R, Shatner W, Cao Y, Bai Y. State-of-the-art on the technique of dispersive liquid-liquid microextraction. Ultrason Sonochem. 2019;51:369–77.
Srivastava A, Godbole M, Shrivastava A. Estimation of steroid hormones in biological samples using micro extraction and advanced chromatography techniques. Austin J Anal Pharm Chem. 2022;9(3):1150.
Rathnasamy SK, Sri Rajendran D, Balaraman HB, Viswanathan G. Functional deep eutectic solvent-based chaotic extraction of phycobiliprotein using microwave-assisted liquid-liquid micro-extraction from Spirulina (Arthrospira platensis) and its biological activity determination. Algal Res. 2019;44:101709.
Balaraman HB, Rathnasamy SK. Selective purification of protease from ginger and sodom apple by ultrasound assisted liquid-liquid microextraction using natural deep eutectic solvent. Microchem J. 2019;150: 104132.
Ma W, Yang B, Li J, Li X. Amino-functional metal–organic framework as a general applicable adsorbent for simultaneous enrichment of nine neonicotinoids. Chem Eng J. 2022;434: 134629.
Hashemi B, Zohrabi P, Shamsipur M. Recent developments and applications of different sorbents for SPE and SPME from biological samples. Talanta. 2018;187:337–47.
Goh S, Duarah A, Zhang L, Snyder SA, Lee HK. Online solid phase extraction with liquid chromatography–tandem mass spectrometry for determination of estrogens and glucocorticoids in water. J Chromatogr A. 2016;1465:9–19.
Weisser JJ, Hansen CH, Poulsen R, Larsen LW, Cornett C, Styrishave B. Two simple cleanup methods combined with LC-MS/MS for quantification of steroid hormones in in vivo and in vitro assays. Anal Bioanal Chem. 2016;408(18):4883–95.
Márta Z, Bobály B, Fekete J, Magda B, Imre T, Mészáros KV, Bálint M, Szabó PT. Simultaneous determination of thirteen different steroid hormones using micro UHPLC-MS/MS with on-line SPE system. J Pharm Biomed Anal. 2018;150:258–67.
Li X, Li S, Kellermann G. Simultaneous determination of three estrogens in human saliva without derivatization or liquid-liquid extraction for routine testing via miniaturized solid phase extraction with LC-MS/MS detection. Talanta. 2018;178:464–72.
Guo F, Shao J, Liu Q, Shi J-B, Jiang G-B. Automated and sensitive determination of four anabolic androgenic steroids in urine by online turbulent flow solid-phase extraction coupled with liquid chromatography–tandem mass spectrometry: a novel approach for clinical monitoring and doping control. Talanta. 2014;125:432–8.
Struck-Lewicka W, Karpinska B, Rodzaj W, Nasal A, Wielgomas B, Markuszewski MJ, Siluk D. Development of the thin film solid phase microextraction (TF-SPME) method for metabolomics profiling of steroidal hormones from urine samples using LC-QTOF/MS. Front Mol Biosci. 2023;10:1074263.
Goh SXL, Goh EXY, Lee HK. Sodium dodecyl sulfate-multi-walled carbon nanotubes-coated-membrane solid phase extraction of glucocorticoids in aqueous matrices. Talanta. 2021;221: 121624.
Shi P, Wang Y, Wu W, Xia B, Zhou Y. A novel functionalized covalent organic framework/carbon nanotube composite as an effective online solid-phase extraction sorbent for simultaneous detection of 33 steroid hormones in pork. Food Chem. 2022;379: 132111.
Peng R, Le J, Yang S-L, Cheng J-R, Li Y, Wang S. Cold-induced phase separation for the simple and reliable extraction of sex hormones for subsequent LC-MS/MS analysis. J Lipid Res. 2022;63(1): 100158.
Qin Q, Feng D, Hu C, Wang B, Chang M, Liu X, Yin P, Shi X, Xu G. Parallel derivatization strategy coupled with liquid chromatography-mass spectrometry for broad coverage of steroid hormones. J Chromatogr A. 2020;1614: 460709.
Di Donna L, Benabdelkamel H, Taverna D, Indelicato S, Aiello D, Napoli A, Sindona G, Mazzotti F. Determination of ketosteroid hormones in meat by liquid chromatography tandem mass spectrometry and derivatization chemistry. Anal Bioanal Chem. 2015;407(19):5835–42.
Faqehi AMM, Cobice DF, Naredo G, Mak TCS, Upreti R, Gibb FW, Beckett GJ, Walker BR, Homer NZM, Andrew R. Derivatization of estrogens enhances specificity and sensitivity of analysis of human plasma and serum by liquid chromatography tandem mass spectrometry. Talanta. 2016;151:148–56.
Keski-Rahkonen P, Desai R, Jimenez M, Harwood DT, Handelsman DJ. Measurement of estradiol in human serum by LC-MS/MS using a novel estrogen-specific derivatization reagent. Anal Chem. 2015;87(14):7180–6.
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