Fentanyl has emerged as the leading cause of fatal drug overdoses in the U.S. Individuals misusing drugs may not always be aware of exposure to fentanyl. To determine the prevalence of fentanyl use and extent of awareness of fentanyl exposure among a national sample of treatment-seeking individuals with opioid use disorder ( = 1098). Participants provided oral fluid and urine specimens, which were tested for drugs by liquid chromatography/tandem mass spectrometry. Participants also provided self-reports of fentanyl use. 49.5% tested positive for fentanyl in oral fluid, urine, or both. Of those testing positive for fentanyl, 29.8% were unaware that they had been exposed to fentanyl. Participants testing positive for opioids methadone, and specifically 6-monoacetylmorphine (6-MAM), a unique metabolite of heroin, were significantly more likely to be unaware of fentanyl exposure than participants testing negative for these substances, with a similar trend for oxycodone and tramadol. These findings may be due to fentanyl's effect being difficult to distinguish from that of other opioids, whereas when other types of drugs are adulterated with fentanyl, the differences in effects are likely to be readily discernable. These results support the importance of expanded drug-checking services.
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http://dx.doi.org/10.1080/10550887.2023.2293643 | DOI Listing |
ACS Cent Sci
December 2024
Physical and Life Sciences Directorate, Biosciences and Biotechnology Division, Global Security Directorate, Forensic Science Center, and Materials Science Division, Lawrence Livermore National Laboratory, Livermore, California 94550, United States.
Subetadex-α-methyl (SBX-Me), a modified, polyanionic cyclodextrin scaffold, has been evaluated for its utilization as a medical countermeasure (MCM) to neutralize the effects of fentanyl and related opioids. Initial toxicity assays demonstrate that SBX-Me has a nontoxic profile, comparable to the FDA-approved cyclodextrin-based drug Sugammadex. Pharmacokinetic analysis showed rapid clearance of SBX-Me with an elimination half-life of ∼7.
View Article and Find Full Text PDFAnesthesiology
December 2024
Department of Anesthesia, Critical Care and Pain Medicine, Massachusetts General Hospital, Boston, MA, USA.
Background: Fentanyl is a synthetic opioid that is widely used in anesthesiology, but its illicit use is rapidly increasing. At high doses fentanyl induces unconsciousness and muscle rigidity, the mechanisms of which are poorly understood. Since animal models are needed to study these effects, the aim of this study was to establish a rat model of fentanyl abuse and investigate the effects of repeated high-dose fentanyl injections on loss of righting reflex, heart rate, respiratory depression, muscle, and brain activity.
View Article and Find Full Text PDFJ Med Toxicol
December 2024
Oregon Health & Science University, 3181 SW Sam Jackson Park Rd, CSB-550, Portland, OR, 97239, USA.
Clin Toxicol (Phila)
December 2024
Oregon Health and Science University & Oregon Poison Center, Portland, OR, USA.
Introduction: Fentanyl has replaced diacetylmorphine (heroin) as the primary illicit opioid in the United States. Over the last several years, exposures to illicit fentanyl in small children have increased nationally. We hypothesized that the increase in illicit fentanyl in the community, as measured by regional drug seizures, would be associated with the number of pediatric exposures to illicit fentanyl.
View Article and Find Full Text PDFSubst Abuse Rehabil
December 2024
The Joint Innovation Center for Health & Medicine, The Quzhou Affiliated Hospital of Wenzhou Medical University, Quzhou People's Hospital, Quzhou, 324000, People's Republic of China.
Background: Opioid-based medications are powerful analgesics commonly prescribed for pain management, but they are also highly addictive. The over-prescription of opioids analgesics has triggered current opioid crisis, which now has expanded to heroin and illicit synthetic opioids like fentanyl and its analogues. The side effects of fentanyl abuse have been well recognized, yet the underlying molecular adaptations across brain regions upon fentanyl exposure remain elusive.
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