Opiates in Urine by SAMHSA GC/MS

Similar documents
Benzoylecgonine in Urine by SAMHSA GC/MS

Place a collection tube beneath cartridge. 3 ml methylene chloride/isopropyl alcohol/ hydrochloric acid (60/40/1) Collect the eluant

Toxicology Extraction Procedure for Base Drugs Using United Chemical Technologies Clean Screen Extraction Columns

Abstract. Experimental Sample Preparation

Determination of Cannabinoids (THC) in Biological Samples

Residual Solvents in Pharmaceuticals by USP Chapter <467> Methodology

Rapid, Robust, and Sensitive Detection of 11-nor-D 9 - Tetrahydrocannabinol-9-Carboxylic Acid in Hair

Application Note. Gas Chromatography/Mass Spectrometry/Food Safety. Abstract. Authors

Confirmation and Quantitation of THC in Oral Fluid Using an MRM Method on a GC-Triple Quadrupole MS

SAMHSA-Compliant LC/MS/MS Analysis of Phencyclidine in Urine with Agilent Bond Elut Plexa PCX and Agilent Poroshell 120

METHADONE and EDDP in urine by GC-MS Code GC Method of Confirmation by GC-MS

High-Throughput Confirmation and Quantitation of a THC Metabolite in Urine Using the DSQ II GC/MS

[application note] INTRODUCTION EXPERIMENTAL. Specimens. Extraction

Fast, Quantitative Analysis of Residual Solvents in Cannabis Concentrates

HYPHENATED TECHNOLOGY GUIDE

Determination of VOC in Artificial Runway by Multiple Headspace Extraction-GC/MS. Gas Chromatography/ Mass Spectrometry APPLICATION.

Applying the Technology of the TurboMatrix 650 ATD to the Analysis of Liquid Accelerants in Arson Investigation

NORBUPRENORPHINE (Buprenorphine s Metabolite ) BUPRENORPHINE in urine by GC/MS Code GC Method of Confirmation by GC-MS

Detection of 9-tetrahydrocannabinol ( 9-THC) in human urine by Solid Phase Extraction and HPLC.

Ultrafast Analysis of Buprenorphine and Norbuprenorphine in Urine Using the Agilent RapidFire High-Throughput Mass Spectrometry System

Analysis of Pharmaceuticals and Personal Care Products in River Water Samples by UHPLC-TOF

U.S. EPA Method 8270 for multicomponent analyte determination

Uncontrolled Copy. SOP 109 Ethylene Glycol Screen by Gas Chromatography/Mass Spectrometry. Table of Contents. 1. Principle of Assay...

Technical Procedure for Solid Phase Extraction of THC and THC-COOH for GC-MS Analysis

Technical Procedure for Blood Cannabinoid Liquid-Liquid Extraction (BCLLE) for Analysis by LC-MS/MS

HYPHENATED TECHNOLOGY GUIDE

VOC Analysis of Water-Based Coatings by Headspace-Gas Chromatography

Analysis of Polyphenols in Saffron Petal Extracts with UHPLC/UV/MS

Psychoactive Drugs Urine LC-MS/MS Analysis Kit User Manual

Improved Extraction of THC and its Metabolites from Oral Fluid Using Oasis PRiME HLB Solid Phase Extraction (SPE) and a UPLC CORTECS C 18

EVOLUTE WCX Columns for Solid Phase Extraction of Quaternary Amines and Strongly Basic Compounds from Aqueous Samples

Separation and Characterization of Indian and Australian Sandalwood Oils

Characteristic of Calibration Curve Resulting from the Use of 2 H-analogs of the Analyte as Internal Standards--Methamphetamine Example

Analysis of Cannabinoids and Amphetamines in Serum by RRLC/Triple Quadrupole Mass Spectrometry Using a Multimode Ion Source. Application.

Uncontrolled Copy. SOP Ethylene Glycol Quantitation by Gas Chromatography/Mass Spectrometry. Table of Contents. 1. Principle of Assay...

Maximizing Triple Quadrupole Mass Spectrometry Productivity with the Agilent StreamSelect LC/MS System

SECOBARBITAL Latest Revision: February 15, 1999

Quantification of Rice Aroma, 2-Acetyl-1-Pyrroline (2-AP), Using TurboMatrix Headspace Trap Coupled with GC/NPD and GC/MS

Method 8260C by Purge and Trap Gas Chromatography Mass Spectrometry using the Clarus SQ 8

Diquat 1,1 -ethylene-2,2 -bipyridium dibromide salt Paraquat 1,1 -dimethyl-4,4 -bipyridium dichloride salt Initial Preparation

Analysis of Synthetic Cannabinoids and Metabolites: Adding New Compounds to an Existing LC-MS/MS Method

Macrolides in Honey Using Agilent Bond Elut Plexa SPE, Poroshell 120, and LC/MS/MS

Analysis of Drugs in Hair using GC/GC/MS CAT Meeting 3/2/07

2,5-DIMETHOXY-4-IODOPHENETHYLAMINE Latest Revision: August 22, 2005

Detection of Phencyclidine in Human Oral Fluid Using Solid Phase Extraction and Liquid Chromatography with Tandem Mass Spectrometric Detection

Extraction of Cocaine and Metabolites From Urine Using ISOLUTE SLE+ prior to LC-MS/MS Analysis

STANDARD OPERATING PROCEDURES SOP: 1828 PAGE: 1 of 14 REV: 0.0 DATE: 05/12/95 ANALYSIS OF METHYL PARATHION IN CARPET SAMPLES BY GC/MS

ACETONE IN URINE BY GC/MS Headspace Code GC10110

Exploring the Benefits of Automated Unattended Sample Derivatization Prior to Gas Chromatography Analysis

DIQUAT DIBROMIDE. The Determination of Ethylene Dibromide in Diquat Dibromide and Diquat Dibromide / Paraquat Dichloride SL Formulations

Analysis of Opioids Using Isotope Dilution with GCMS-TQ8030 GC/MS/MS. No. GCMS No. SSI-GCMS-1401

HANDBOOK OF DRUG ANALYSIS

Amphetamines, Phentermine, and Designer Stimulant Quantitation Using an Agilent 6430 LC/MS/MS

LC-MS/MS Analysis of Phytocannabinoids and their

Definitive EtG/EtS LC-MS/MS Analysis:

Prepared By: R. W. Waggoner, Jr. Effective Date: August 18, 2008

VMA, HVA, 5-HIAA Urine LC-MS/MS Analysis Kit User Manual

GAFTI Analytical method for ISO/TS 16179:2012 Detection and Determination of Organotin Compounds in Footwear and Apparel Materials by GC-MS

Development of analytical methods for Catecholamines, Metanephrines and related metabolites in urine and plasma matrices

Determination of Phenoxyacid Herbicides in Water by Solid Phase Extraction and LC-MS/MS Detection

--> Buy True-PDF --> Auto-delivered in 0~10 minutes. GB Translated English of Chinese Standard: GB5009.

Characterization of Carbon SPE for the Extraction of Polar Analytes

University of the Aegean

Analyst

Method - Determination of aromatic amines in mainstream cigarette smoke

BENZYLPIPERAZINE Latest Revision: June 1, 2005

Agilent s New Weak Anion Exchange (WAX) Solid Phase Extraction Cartridges: SampliQ WAX

Accelerated Solvent Extraction GC-MS Analysis and Detection of Polycyclic Aromatic Hydrocarbons in Soil

Quantitative Analysis of EtG and EtS in Urine Using FASt ETG and LC-MS/MS

Sensitive determination of THCCOOH in hair to regulatory requirements using Triple Quadrupole GC-MS/MS

Analysis of basic compounds in urine by on-line extraction-hplc-dad

Determination of Volatile Substances Proof of Food Adulteration

Analytical determination of testosterone in human serum using an Agilent Ultivo Triple Quadrupole LC/MS

NCFS Sample Preparation and Instrumental Parameters

Method of determination of phtalates in spirituous beverages by gaschromatography/mass

Yuhui Yang, An Trinh, Michael Ye, and Tom Henderson 595 North Harrison Road, Bellefonte, PA T HKB

The end of. mass-speculation. MS Certified Vials Pre-cleaned and certified vials for mass spectrometry

Drugs of Abuse by Direct Sample Probe Using Single Quadrupole GC/MS

1-(2-METHOXYPHENYL)PIPERAZINE Latest revision: June 27, 2005

Plasma Metanephrines and 3-Methoxytyramine by LC/MS/MS Using Agilent SimpliQ WCX SPE, 1290 Infi nity LC, and 6460 Triple Quadrupole LC/MS

ENVIRONMENTAL analysis

Rapid Screening and Confirmation of Melamine Residues in Milk and Its Products by Liquid Chromatography Tandem Mass Spectrometry

Quantitative Analysis of EtG and EtS in Urine Using FASt ETG and LC-MS/MS

GC/MS Application Note

Ultrafast Analysis of Methadone and Metabolite EDDP in Urine by the Agilent RapidFire High-Throughput Mass Spectrometry System

1,2-Dibromoethane (EDB) and 1,2-dibromo-3-chloropropane (DBCP), gas chromatography, microextraction

p-methoxyamphetamine Latest Revision: May 16, 2013

Mass Spectral Studies of Polypropylene Chromatographic Well Plates

Method of confirmation by GC-MS

LC-MS/MS Method for the Determination of Diclofenac in Human Plasma

This method describes the identification of the following prohibited colorants in cosmetic products:

Analyzing Residual Solvents in Pharmaceutical Products Using GC Headspace with Valve-and-Loop Sampling

Introduction to Capillary GC. Page 1. Agilent Restricted February 2, 2011

Pasadena Police Department Regional Crime Laboratory Standard Operating Procedures and Training Guide Toxicology

LC/MS/MS qua ntitation of β-estradiol 17-acetate using an Agilent 6460 Triple Quadrupole LC/MS working in ESI negative ion mode

METHYLETHYLKETONE (M.E.K.) IN URINE BY GC/MS in head space Code GC10010

EPA Method 535: Detection of Degradates of Chloroacetanilides and other Acetamide Herbicides in Water by LC/MS/MS

Method Development in Solid Phase Extraction using Non-Polar ISOLUTE SPE Columns for the Extraction of Aqueous Samples

JWH-018 and JWH-022 as Combustion Products of AM2201

STANDARD OPERATING PROCEDURES SOP: 1826 PAGE: 1 of 18 REV: 0.0 DATE: 03/30/95 ANALYSIS OF METHYL PARATHION IN WIPE SAMPLES BY GC/MS

Transcription:

application Note Gas Chromatography/ Mass Spectrometry Author Timothy D. Ruppel PerkinElmer, Inc. Shelton, CT 06484 USA Opiates in Urine by SAMHSA GC/MS Introduction The United States Department of Health and Human Services (DHHS), Substance Abuse and Mental Health Services Administration (SAMHSA) regulates urine drug testing programs in the mandatory guidelines for the Federal Workplace Drug Testing Program. These Mandatory Guidelines require a laboratory to conduct two analytical tests before a urine specimen can be reported positive for a drug, the initial drug test and the confirmatory drug test. The initial drug test is performed by immunoassay screening for the five drug classes (i.e., amphetamines, cocaine, opiates, phencyclidine, and marijuana). Examples of immunoassay screening would include radioimmunoassay (RIA), enzyme immunoassay (EIA, EMIT) or others. Samples found positive to the immunoassay screening are subjected to a second confirmatory test by chromatographic separation and identification by mass spectrometry. SAMHSA defines the method quantification cutoff level as 2000 ng/ml each for codeine and morphine. If morphine is detected above 2000 ng/ml, then an additional quantification for 6-acetylmorphine is suggested. 6-AM is a unique metabolite indicating the use of heroin. 6-AM cutoff level is 10 ng/ml.

The general procedure for drug confirmatory test in urine follows the 7 steps listed below: 1. Add a deuterated internal standard to the urine. 2. Adjust urine ph. 3. Hydrolyze urine (opiates and cannabinoids only). 4. Extract drugs from urine using solid phase extraction (SFE), evaporate to dryness. 5. Derivitize the extract (except for PCP), evaporate to dryness. 6. Reconstitute extract into organic solvent. 7. Inject 1-3 µl into gas chromatograph/mass spectrometer for identification and quantitation using three ion ratio reporting software. Glassware All glassware, including autosampler vials and low volume vial inserts must be silanized to prevent adsorption of sample. Soak all glassware in 10% DMDCS/Toluene for 10 min. Rinse in methanol, rinse in hexane, air dry. Reagents list Beta-glucuronidase Sodium Hydroxide Hydrochloric Acid (conc.) Acetic Acid, 100 mm = 2.86 ml glacial acetic acid diluted to 500 ml DI water Phosphate buffer, 100 mm ph6 = 1.7 g Na 2HPO 4 + 12.14 g Na 2PO 4 dilute to 1000 ml with DI water. Adjust to ph6 with 100 mm Na 2HPO 4 (raises ph) or 100 mm Na 2HPO 4 (lowers ph). Methylene Chloride/Isopropanol/Ammonium Hydroxide (78:20:2) extraction solvent = 40 ml IP-OH + 4 ml con NH 4OH + 156 ml MeCl 2. Make fresh daily. Drug standards and deuterated internal standards are available from Cerillant (Round Rock, TX). Internal standard: d3-codeine, d3-morphine, d3-6-acetylmorphine. Instrumentation Gas Chromatograph: PerkinElmer Clarus 680 GC Injector: Capillary injector using pressure pulsed splitless injection, 250 C. Injection port liner: Siltek with wool (Cat No. N6502010). GC Column: Elite-5 (5%Phenyl/95% Methyl Silicone) 12 m x.200 mm x 0.33 µm (Cat No. N9316110). Helium carrier 2 ml/min GC oven: Start temperature 100 C hold for 0.5 min, then 20 C/min to 310 C hold 4 min. Pressure pulsed, splitless injection This procedure raises the injector pressure during the injection process to put more sample onto the column in a narrow band and then reduces the carrier gas to normal operational linear gas velocity for chromatography. This is accomplished with timed events such as the following: CAR2 set to 5 ml/min at -0.71 min (raise pressure before injection). SPL2 set to 0 at -0.70 min (splitless injection). CAR2 set to 2 ml/min at 0.7 min (operating flow after injection). SPL2 set to 50 at 0.8 min (open split vent after injection). Mass Spectrometer PerkinElmer SQ8 MS, 270 L/sec turbomolecular pump, EI mode. All data is collected in selected ion monitoring mode (SIM) acquiring 20-30 msec per ion. A primary ion is used for identification and quantitation while 2 additional ions are used for confirmation of identification. Three ion ratio chromatograms must all apex within ±2 scans of standard retention time. Ion ratios must fall within ±20% of standard ratios. Deuterated internal standards may use only 2 ions, a primary ion and only 1 confirmation ion. 2

PFPA SIM ions: Codeine: 282,445, 446 d3-codeine: 285, 448 RT: 7.16 min Morphine: 414, 430, 577 d3-morphine: 417, 580 RT: 7.35 min 6-acetylmorphine: 414, 361, 473 d3-6-acetylmorphine: 417, 479 BSTFA SIM ions: Codeine: 371, 234, 343 d3-codeine: 374, 237 Morphine: 429, 287, 324 d3-morphine: 432, 290 Solid Phase Extraction Drugs are extracted from the urine sample matrix by solid phase extraction (SPE) with a polymeric resin cartridge. The drugs are retained as the urine is passed through the resin bed. Washing the bed can remove salts and other contaminants. Eluting the drugs off the resin bed with a stronger solvent completes the cleanup process from the urine. Extraction cartridges used were Supra-Clean SPE Columns C18-S 200 mg/3 ml 50 u (Cat No. N9306462). Hydrolysis Hydrolysis is necessary in some drugs to remove glucuronide bonding which prevents the solubility and extraction of the drug. This preparation before extraction is usually accomplished either by enzyme or acid hydrolysis of the sample. Both procedures are outlined below. Enzyme Hydrolysis Procedure Combine 3-5 ml urine sample with ISTD and 2 ml betaglucuronidase, vortex, heat 3 hours at 65 C. Cool, centrifuge, decant and keep top layer. Adjust ph to 6.0 with 700 ul 1.0 N NaOH. Acid Hydrolysis Combine 3-5 ml urine sample with ISTD and 500 ul concentrated HCl, vortex, heat 30 min at 120 C. Cool, centrifuge, decant and keep top layer. Add 1 ml 7.4 N NH 4OH, vortex. Adjust ph to 6.0 with 1-3 ml of 500 mm phosphoric acid. Experimental Extraction Procedure: 3 ml urine + ISTD. Hydrolyze sample to break glucuronide bonding. SPE column extract: Condition column with 3 ml methanol, then 3 ml DI water, then 1 ml 100 mm phosphate buffer ph6. Extract sample, wash column with 3 ml DI water, then 1 ml 100 mm Acetic Acid, then 1 ml methanol. Elute column with 3 ml Methylene chloride:isopropanol: Ammonium Hydroxide (78:20:2) into conical tube. Evaporate to dryness <50 C. Derivitize with 50 ul PFPA, add 25 ul PFPOH. Cover with N2, cap, mix, heat 70 C (20 min). Evaporate to dryness <50 C. Reconstitute in 100 µl ethyl acetate, transfer to low volume autosampler vial insert, inject 1 µl. Alternative Derivitization Procedure Reconstitute dried extract with 50 ul ethyl acetate, add 50 ul BSTFA with 1% TMCS. Cover with N2, cap, mix, heat 70 C (20 min), cool, do not evaporate, inject BSTFA solution directly. Calibration Range 10% cutoff (200 ng/ml), 40% cutoff (800 ng/ml), 100% cutoff (2000 g/ml), 125% cutoff (2500 ng/ml), 500% cutoff (10000 ng/ml), 1000% cutoff (20000 ng/ml) 3

Results Limit of Quantitation: 20 ng/ml from 1mL urine. Limit of Detection: < 2 ng/ml from 1 ml urine. Linear Correlation coefficient (R 2 ) >0.999 20 ng/ml 20000 ng/ml. Results for 6-acetylmorphine PFP 4

Conclusion The GC/MS analysis of codeine and morphine in this application has demonstrated the limit of quantitation at or below 20 ng/ml in urine a 10 fold factor lower than the limit of quantitation requirements of the Federal Workplace Drug Testing Program. Forensic and clinical laboratories can use the same method for toxicology samples in non-regulated drug testing. Fast sample throughput was increased through the use of a short GC column, fast flow rate into the mass spectrometer, very fast cooling GC oven and autosampler pre-rinsing options. The PerkinElmer SQ8 GC/MS system operating in SIM mode provided the sensitivity and spectral data necessary to generate legally defensible results. The TurboMass GC/MS software includes the reporting capability required to present three-ion-ratio data in a format that is simple and easy to understand. An example of a customizable three-ion ratio report. References 1. Disposition of Toxic Drugs and Chemicals in Man, 8th Ed, Randall C. Baselt, Biomedical Publications, 2008. 2. Mandatory Guidelines for Federal Workplace Drug Testing Programs, Fed Reg, 73: 71857 (Nov 25, 2008). 3. Mandatory Guidelines for Federal Workplace Drug Testing Programs, Fed Reg, 75: 22809 (April 30, 2010). 4. Pierce Catalog (Rockford, IL). PerkinElmer, Inc. 940 Winter Street Waltham, MA 02451 USA P: (800) 762-4000 or (+1) 203-925-4602 www.perkinelmer.com For a complete listing of our global offices, visit www.perkinelmer.com/contactus Copyright 2011, PerkinElmer, Inc. All rights reserved. PerkinElmer is a registered trademark of PerkinElmer, Inc. All other trademarks are the property of their respective owners. 009816_01