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Unexpected interference of baby wash products with a cannabinoid (THC) immunoassay
Steven W Cotten1, Daniel L Duncan, Elizabeth A Burch
1Department of Pathology and Laboratory Medicine, University of North Carolina - Chapel Hill, Chapel Hill, NC 27599, USA.
Insights
Common baby soaps can cause false positive drug screening results for newborns. This study identified specific surfactants in these products that interfere with cannabinoid (THC) immunoassays, potentially leading to serious social and legal consequences.
Area of Science:
- Clinical Chemistry
- Neonatal Care
- Forensic Toxicology
Background:
- Newborn drug screening is critical for healthcare and legal systems.
- Accuracy in screening is paramount to avoid severe consequences.
- Suspected false positive cannabinoid (THC) results in newborns prompted an investigation.
Purpose of the Study:
- To evaluate the newborn drug screening process for pre-analytical and analytical errors.
- To identify sources of interference causing false positive THC screening results.
- To assess the impact of common newborn care products on drug screening accuracy.
Main Methods:
- Drug-free urine was mixed with commercial baby products and tested via immunoassay.
- Various commercial products and their constituent surfactants were evaluated.
- The impact of these mixtures on THC immunoassay results was analyzed.
Main Results:
- Baby wash products caused dose-dependent, measurable responses in THC immunoassays.
- Specific chemical surfactants in baby soaps were identified as interfering agents.
- Other commercial baby soaps also produced similar interfering effects.
Conclusions:
- Commonly used newborn soaps and washes can cause false positive THC screening results.
- These false positives may lead to social services involvement or false child abuse allegations.
- Laboratories and healthcare providers must be aware of this interference and confirm results, emphasizing the importance of the total testing process.
Objectives:
The results of newborn drug screening have far-reaching impact not only in healthcare, but also in the legal domain. Therefore, the accuracy of these results cannot be undervalued. When false positive cannabinoid (THC) screening results for this population were suspected at our institution, a multidisciplinary approach was initiated to evaluate the screening process for any pre-analytical or analytical sources of error or interference.
Design And Methods:
Mixtures of drug-free urine with various commercial products and materials that commonly contact newborns in our nursery were prepared and tested using the immunoassay screening methods in our laboratory. Additional commercial products were similarly tested; and when available, individual surfactants common to the interfering products were also evaluated.
Results:
Addition of Head-to-Toe Baby Wash to drug-free urine produced a dose dependent measureable response in the THC immunoassay. Addition of other commercially available baby soaps gave similar results, and subsequent testing identified specific chemical surfactants that reacted with the THC immunoassay.
Conclusion:
We have identified commonly used soap and wash products used for newborn and infant care as potential causes of false positive THC screening results. Such results in this population can lead to involvement by social services or false child abuse allegations. Given these consequences, it is important for laboratories and providers to be aware of this potential source for false positive screening results and to consider confirmation before initiating interventions. Most importantly, we demonstrate the need for active involvement in the "total testing process," as sources of error are not confined to the laboratory walls.
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