False-positive interferences of common urine drug screen immunoassays: a review

A Saitman, HD Park, RL Fitzgerald - Journal of analytical …, 2014 - academic.oup.com
A Saitman, HD Park, RL Fitzgerald
Journal of analytical toxicology, 2014academic.oup.com
Urine drug screen (UDS) immunoassays are a quick and inexpensive method for
determining the presence of drugs of abuse. Many cross-reactivities exist with other
analytes, potentially causing a false-positive result in an initial drug screen. Knowledge of
these potential interferents is important in determining a course of action for patient care. We
present an inclusive review of analytes causing false-positive interferences with drugs-of-
abuse UDS immunoassays, which covers the literature from the year 2000 to present …
Abstract
Urine drug screen (UDS) immunoassays are a quick and inexpensive method for determining the presence of drugs of abuse. Many cross-reactivities exist with other analytes, potentially causing a false-positive result in an initial drug screen. Knowledge of these potential interferents is important in determining a course of action for patient care. We present an inclusive review of analytes causing false-positive interferences with drugs-of-abuse UDS immunoassays, which covers the literature from the year 2000 to present. English language articles were searched via the SciFinder platform with the strings ‘false positive [drug] urine’ yielding 173 articles. These articles were then carefully analyzed and condensed to 62 that included data on causes of false-positive results. The discussion is separated into six sections by drug class with a corresponding table of cross-reacting compounds for quick reference. False-positive results were described for amphetamines, opiates, benzodiazepines, cannabinoids, tricyclic antidepressants, phencyclidine, lysergic acid diethylamide and barbiturates. These false-positive results support the generally accepted practice that immunoassay positive results are considered presumptive until confirmed by a second independent chemical technique.
Oxford University Press
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