Literature DB >> 24488113

Evaluation of abalone β-glucuronidase substitution in current urine hydrolysis procedures.

Brittany Malik-Wolf1, Shawn Vorce, Justin Holler, Thomas Bosy.   

Abstract

This study examined the potential of abalone β-glucuronidase as a viable and cost effective alternative to current hydrolysis procedures using acid, Helix pomatia β-glucuronidase and Escherichia coli β-glucuronidase. Abalone β-glucuronidase successfully hydrolyzed oxazepam-glucuronide and lorazepam-glucuronide within 5% of the spiked control concentration. Benzodiazepines present in authentic urine specimens were within 20% of the concentrations obtained with the current hydrolysis procedure using H. pomatia β-glucuronidase. JWH 018 N-(5-hydroxypentyl) β-d-glucuronide was hydrolyzed within 10% of the control concentration. Authentic urine specimens showed improved glucuronide cleavage using abalone β-glucuronidase with up to an 85% increase of drug concentration, compared with the results obtained using E. coli β-glucuronidase. The JWH 018 and JWH 073 carboxylic acid metabolites also showed increased drug concentrations of up to 24%. Abalone β-glucuronidase was able to completely hydrolyze a morphine-3-glucuronide control, but only 82% of total morphine was hydrolyzed in authentic urine specimens compared with acid hydrolysis results. Hydrolysis of codeine and hydromorphone varied between specimens, suggesting that abalone β-glucuronidase may not be as efficient in hydrolyzing the glucuronide linkages in opioid compounds compared with acid hydrolysis. Abalone β-glucuronidase demonstrates effectiveness as a low cost option for enzyme hydrolysis of benzodiazepines and synthetic cannabinoids.

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Year:  2014        PMID: 24488113     DOI: 10.1093/jat/bku003

Source DB:  PubMed          Journal:  J Anal Toxicol        ISSN: 0146-4760            Impact factor:   3.367


  2 in total

1.  Factors Compromising Glucuronidase Performance in Urine Drug Testing Potentially Resulting in False Negatives.

Authors:  L Andrew Lee; Amanda C McGee; Pongkwan Sitasuwan; John J Tomashek; Chris Riley; Ana Celia Muñoz-Muñoz; Lawrence Andrade
Journal:  J Anal Toxicol       Date:  2022-07-14       Impact factor: 3.220

2.  Heroin-Related Compounds and Metabolic Ratios in Postmortem Samples Using LC-MS-MS.

Authors:  Gerd Jakobsson; Michael T Truver; Sonja A Wrobel; Henrik Gréen; Robert Kronstrand
Journal:  J Anal Toxicol       Date:  2021-03-12       Impact factor: 3.367

  2 in total

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