Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS

The illegal production of amphetamine and its derivatives has rapidly increased in the last years to provide the increasing demand all over the world. Since amphetamine is chiral, its enantiomers have different pharmacological activities. The present work aims to study the enantiomeric profile of am...

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Main Author: Abdulrhman M. Dhabbah
Format: Article
Language:English
Published: Elsevier 2020-07-01
Series:Journal of King Saud University: Science
Subjects:
Online Access:http://www.sciencedirect.com/science/article/pii/S1018364720301786
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spelling doaj-d456a172031d4eaba56f77ec53c13cb72020-11-25T03:09:23ZengElsevierJournal of King Saud University: Science1018-36472020-07-0132526222628Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MSAbdulrhman M. Dhabbah0King Fahd Security College, Department of Forensic Sciences, Riyadh, Kingdom of Saudi ArabiaThe illegal production of amphetamine and its derivatives has rapidly increased in the last years to provide the increasing demand all over the world. Since amphetamine is chiral, its enantiomers have different pharmacological activities. The present work aims to study the enantiomeric profile of amphetamine in several batches of tablets seized from the illegal market. The R and S antipodes were first converted to diastereomers by reaction with trifluoroacetyl-l-prolyl chloride (L-TPC) as chiral reagent. The obtained diastereomers were then full separated by gas chromatography with a resolution factor RS of 1.69, then characterized by mass spectrometry. Both S and R-amphetamine showed similar contents in all investigated samples, with a slight excess of the more active S eutomer. The calculated enantiomeric excess (ee%) values are all positive in the range 0.60–9.72%. The total concentration of amphetamine was from 36.44 to 96.22 mg/g in all tablets. The seized materials showed also the presence of some other ingredients used as additives in manufacturing the tablets such as caffeine, phenazocine, diphenhydramine, dibutyl phthalate and 9-octadecenamide. These findings confirmed that the synthesis of amphetamine used in these tablets was performed using inexpensive and achiral starting substances.http://www.sciencedirect.com/science/article/pii/S1018364720301786R and S-amphetamineChiral separationDerivatizationGC–MSSeized tablets
collection DOAJ
language English
format Article
sources DOAJ
author Abdulrhman M. Dhabbah
spellingShingle Abdulrhman M. Dhabbah
Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
Journal of King Saud University: Science
R and S-amphetamine
Chiral separation
Derivatization
GC–MS
Seized tablets
author_facet Abdulrhman M. Dhabbah
author_sort Abdulrhman M. Dhabbah
title Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
title_short Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
title_full Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
title_fullStr Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
title_full_unstemmed Determination of chiral amphetamine in seized tablets by indirect enantioseparation using GC–MS
title_sort determination of chiral amphetamine in seized tablets by indirect enantioseparation using gc–ms
publisher Elsevier
series Journal of King Saud University: Science
issn 1018-3647
publishDate 2020-07-01
description The illegal production of amphetamine and its derivatives has rapidly increased in the last years to provide the increasing demand all over the world. Since amphetamine is chiral, its enantiomers have different pharmacological activities. The present work aims to study the enantiomeric profile of amphetamine in several batches of tablets seized from the illegal market. The R and S antipodes were first converted to diastereomers by reaction with trifluoroacetyl-l-prolyl chloride (L-TPC) as chiral reagent. The obtained diastereomers were then full separated by gas chromatography with a resolution factor RS of 1.69, then characterized by mass spectrometry. Both S and R-amphetamine showed similar contents in all investigated samples, with a slight excess of the more active S eutomer. The calculated enantiomeric excess (ee%) values are all positive in the range 0.60–9.72%. The total concentration of amphetamine was from 36.44 to 96.22 mg/g in all tablets. The seized materials showed also the presence of some other ingredients used as additives in manufacturing the tablets such as caffeine, phenazocine, diphenhydramine, dibutyl phthalate and 9-octadecenamide. These findings confirmed that the synthesis of amphetamine used in these tablets was performed using inexpensive and achiral starting substances.
topic R and S-amphetamine
Chiral separation
Derivatization
GC–MS
Seized tablets
url http://www.sciencedirect.com/science/article/pii/S1018364720301786
work_keys_str_mv AT abdulrhmanmdhabbah determinationofchiralamphetamineinseizedtabletsbyindirectenantioseparationusinggcms
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