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Novel extended-release transdermal formulations of the psychedelic N,N-dimethyltryptamine (DMT).

Christopher G Witowski, Mika R Hess, Nate T Jones, Molly C Pellitteri Hahn, John Razidlo, Riya Bhavsar, Christina Beer, Natalie Gonzalez-Velazquez, Cameron O Scarlett, Cody J Wenthur, Jacqueline L von Salm

European journal of pharmaceutical sciences : official journal of the European Federation for Pharmaceutical Sciences August 1, 2024 DOI: 10.1016/j.ejps.2024.106803 via PubMed

Summary

AI-generated from the abstract

A transdermal patch for delivering N,N-dimethyltryptamine (DMT) at low, non-hallucinogenic doses was developed and tested in mice. The patch provided consistent, extended drug release, achieving plasma levels below 60 ng/mL. Compared to intravenous administration, the patch extended DMT's half-life by 20-fold and achieved 77% bioavailability. Female and male mice showed notable differences during IV dosing, but transdermal delivery produced steady levels. A head twitch assay indicated no hallucinogenic effects at these low plasma concentrations. The patch could offer a non-invasive, outpatient treatment option for conditions where high, bolus doses are unnecessary.

Study at a glance

Characteristics Preclinical study Peer reviewed
Population Male and female Swiss Webster mice
Dose sub-hallucinogenic dose not exceeding 60 ng/mL plasma concentration
Topics DMT
Keywords Drug delivery transdermal Extended-release Psychedelics hallucinogens
Citations 7
Key finding A transdermal DMT patch provided extended, non-hallucinogenic drug release with 77% bioavailability and a 20-fold longer half-life compared to IV administration in mice.

Abstract

There is considerable evidence from the literature that psychedelics, such as N,N-dimethyltryptamine (DMT), are safe and effective treatments for depression. However, clinical administration to induce psychedelic effects and expensive psychotherapy-assisted treatments likely limit accessibility to the average patient. There is emerging evidence that DMT promotes positive behavioral changes in vivo at sub-hallucinogenic dosages, and depending on the target indication, subjecting patients to high, bolus dosages may not be necessary. Due to rapid metabolic degradation, achieving target levels of DMT in subjects is difficult, requiring IV administration, which poses risks to patients during the intense hallucinogenic and subjective drug effects. The chemical and physical properties of DMT make it an excellent candidate for non-invasive, transdermal delivery platforms. This paper outlines the formulation development, in vitro, and in vivo testing of transdermal drug-in-adhesive DMT patches using various adhesives and permeation enhancers. In vivo behavioral and pharmacokinetic studies were performed with lead patch formulation (F5) in male and female Swiss Webster mice, and resulting DMT levels in plasma and brain samples were quantified using LC/MS/MS. Notable differences were seen in female versus male mice during IV administration; however, transdermal administration provided consistent, extended drug release at a non-hallucinogenic dose. The IV half-life of DMT was extended by 20-fold with administration of the transdermal delivery system at sub-hallucinogenic plasma concentrations not exceeding 60 ng/mL. Results of a translational head twitch assay (a surrogate for hallucinogenic effects in non-human organisms) were consistent with absence of hallucinations at low plasma levels achieved with our TDDS. Despite the reported low bioavailability of DMT, the non-invasive transdermal DMT patch F5 afforded an impressive 77 % bioavailability compared to IV at two dosages. This unique transdermal delivery option has the potential to provide an out-patient treatment option for ailments not requiring higher, bolus doses and is especially intriguing for therapeutic indications requiring non-hallucinogenic alternatives.

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