[Determination of eleven steroid hormones in animal muscle tissues and eggs using ultra-performance liquid chromatography-tandem mass spectrometry]. 2008

Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
Department of Pharmacology and Toxicology, College of Veterinary Medicine, South China Agriculture University, Guangzhou 510642, China. liminokhe@scau.edu.cn

A credible method was developed for the simultaneous determination of eleven steroid hormone residues in animal muscle tissues and eggs based on ultra-performance liquid chromatography-tandem mass spectrometry (UPLC-MS/MS). The eleven steroid hormones were testosterone, methyltestosterone, trenbolone, boldenone, nandrolone, methandienone, stanozolol, progesterone, nadrolone propionate, testosterone propionate and nadrolone phenylpropionate. The samples were extracted with tert-butyl methyl ether at alkaline pH and then cleaned up by freezing-lipid filtration. All these drugs can be assayed in 10 min by UPLC-MS/MS using electrospray ionization in positive ion mode and multiple reaction monitoring mode. The limits of detection were 0.3 microg/kg for testosterone, methyltestosterone, boldenone, methandienone and stanozolol, and 0.4 microg/kg for trenbolone nandrolone, progesterone, testosterone propionate and nadrolone phenylpropionate. Overall recoveries of testosterone, methyltestosterone, boldenone, methandienone and stanozolol were 62.3% - 105% from pork, beef, mutton and chicken muscle tissues, and eggs fortified at the 1, 2 and 10 microg/kg levels, and the relative standard deviations (RSDs) were 0.5% - 15%. The recoveries of trenbolone nandrolone, progesterone, testosterone propionate and nadrolone phenylpropionate were higher than 50.0%, and the RSDs were lower than 16%. The matrix calibration curve for each drug was linear (r > 0.99) from 1 to 100 microg/L. The established method is simple, rapid, sensitive and specific, and is appropriate for the identification and quantification of anabolic androgenic steroids in animal muscle tissues and eggs.

UI MeSH Term Description Entries
D008460 Meat The edible portions of any animal used for food including cattle, swine, goats/sheep, poultry, fish, shellfish, and game. Meats
D009132 Muscles Contractile tissue that produces movement in animals. Muscle Tissue,Muscle,Muscle Tissues,Tissue, Muscle,Tissues, Muscle
D002417 Cattle Domesticated bovine animals of the genus Bos, usually kept on a farm or ranch and used for the production of meat or dairy products or for heavy labor. Beef Cow,Bos grunniens,Bos indicus,Bos indicus Cattle,Bos taurus,Cow,Cow, Domestic,Dairy Cow,Holstein Cow,Indicine Cattle,Taurine Cattle,Taurus Cattle,Yak,Zebu,Beef Cows,Bos indicus Cattles,Cattle, Bos indicus,Cattle, Indicine,Cattle, Taurine,Cattle, Taurus,Cattles, Bos indicus,Cattles, Indicine,Cattles, Taurine,Cattles, Taurus,Cow, Beef,Cow, Dairy,Cow, Holstein,Cows,Dairy Cows,Domestic Cow,Domestic Cows,Indicine Cattles,Taurine Cattles,Taurus Cattles,Yaks,Zebus
D002851 Chromatography, High Pressure Liquid Liquid chromatographic techniques which feature high inlet pressures, high sensitivity, and high speed. Chromatography, High Performance Liquid,Chromatography, High Speed Liquid,Chromatography, Liquid, High Pressure,HPLC,High Performance Liquid Chromatography,High-Performance Liquid Chromatography,UPLC,Ultra Performance Liquid Chromatography,Chromatography, High-Performance Liquid,High-Performance Liquid Chromatographies,Liquid Chromatography, High-Performance
D004531 Eggs Animal reproductive bodies, or the contents thereof, used as food. The concept is differentiated from OVUM, the anatomic or physiologic entity.
D005504 Food Analysis Measurement and evaluation of the components of substances to be taken as FOOD. Analysis, Food,Analyses, Food,Food Analyses
D005506 Food Contamination The presence in food of harmful, unpalatable, or otherwise objectionable foreign substances, e.g. chemicals, microorganisms or diluents, before, during, or after processing or storage. Food Adulteration,Adulteration, Food,Adulterations, Food,Contamination, Food,Contaminations, Food,Food Adulterations,Food Contaminations
D006728 Hormones Chemical substances having a specific regulatory effect on the activity of a certain organ or organs. The term was originally applied to substances secreted by various ENDOCRINE GLANDS and transported in the bloodstream to the target organs. It is sometimes extended to include those substances that are not produced by the endocrine glands but that have similar effects. Hormone,Hormone Receptor Agonists,Agonists, Hormone Receptor,Receptor Agonists, Hormone
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D013256 Steroids A group of polycyclic compounds closely related biochemically to TERPENES. They include cholesterol, numerous hormones, precursors of certain vitamins, bile acids, alcohols (STEROLS), and certain natural drugs and poisons. Steroids have a common nucleus, a fused, reduced 17-carbon atom ring system, cyclopentanoperhydrophenanthrene. Most steroids also have two methyl groups and an aliphatic side-chain attached to the nucleus. (From Hawley's Condensed Chemical Dictionary, 11th ed) Steroid,Catatoxic Steroids,Steroids, Catatoxic

Related Publications

Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
December 2017, Food chemistry,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
April 2018, Se pu = Chinese journal of chromatography,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
January 2016, Journal of chromatography. B, Analytical technologies in the biomedical and life sciences,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
January 2006, Se pu = Chinese journal of chromatography,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
August 2018, Se pu = Chinese journal of chromatography,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
April 2023, Analytical methods : advancing methods and applications,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
February 2010, Se pu = Chinese journal of chromatography,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
May 2018, Food chemistry,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
November 2011, Se pu = Chinese journal of chromatography,
Limin He, and Xianhui Huang, and Binghu Fang, and Shixin Huang, and Ying Cao, and Jianxin Chen, and Zhenling Zeng, and Zhangliu Chen
January 2013, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment,
Copied contents to your clipboard!