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Biology subjects

Cline, C. A.

Publications and source records attributed to Cline, C. A..

2 recordsLinked to original sources

Xylazine and fentanyl co-administration delays wound healing in mice

Xylazine, a veterinary sedative increasingly found in the unregulated drug supply, is associated with severe skin wounds in humans, particularly when co-used with fentanyl. Despite growing concern, the mechanisms underlying these wounds remain unclear. To investigate how xylazine and fentanyl affect wound healing, we administered subcutaneous injections of saline, xylazine (3.2 mg/kg), fentanyl (1.0 mg/kg), or their combination to female C57BL/6J mice for 28 days. After a standardized punch biopsy, wound closure was tracked for 14 days, with continued drug exposure. Mice receiving the xylazine-fentanyl combination exhibited significantly delayed wound healing compared to all other groups, as shown by slower closure rates and increased area under the healing curve. A follow-up study without chronic pretreatment showed that acute xylazine-fentanyl exposure still altered healing dynamics, although it did not significantly delay time to closure. Neither drug alone impaired healing at the tested doses. These findings suggest that prior exposure to xylazine and fentanyl contributes to impaired wound healing and support the hypothesis that xylazine-associated wounds may arise from delayed healing of pre-existing skin injuries rather than spontaneous formation. This is the first preclinical model of xylazine-related wound impairment and provides a foundation for future research into biological mechanisms and potential interventions for these emerging soft tissue injuries.

pharmacology and toxicology↗

Xylazine is an agonist at kappa opioid receptors and exhibits sex-specific responses to naloxone administration

Xylazine has been found in the unregulated drug supply at increasing rates, usually in combination with fentanyl. It has become critical to understand its basic pharmacology, how it impacts behavior, and how it interacts with fentanyl in rodent models of opioid administration. Despite commentary from scientists, politicians, and public health officials, it is not known if xylazine impacts the efficacy of naloxone, the opioid receptor antagonist used to reverse opioid induced respiratory depression. Furthermore, few studies have examined the effects of xylazine alone, without co-administration of ketamine. Here, we examine the impact of xylazine alone and in combination with fentanyl on several key behaviors in male and female mice. We demonstrate differential locomotor responses by dose and sex to xylazine. Surprisingly, our results further indicate that naloxone precipitates withdrawal from xylazine and a fentanyl/xylazine combination, in both sexes, with enhanced sensitivity in females. Further, we show that xylazine is a full agonist at the kappa opioid receptor, a potential mechanism for its naloxone sensitivity. One-Sentence SummaryWe present surprising new insights into xylazine and fentanyl pharmacology with immediate implications for clinical practice and frontline public health.

neuroscience↗