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Journal Article

In vitro skin permeation of mitragynine: Optimisation of antioxidants for enhanced drug stability and formulation performance

Yee Shan Sim; Juzaili Azizi; Nelson Jeng-Yeou Chear; Siti Rafidah Yusof; Vikneswaran Murugaiyah; Su Yean Teh; Choon Fu Goh
Drug Delivery and Translational Research · Vol. 15, Issue 11 · pp. 4202-4216 · 2025

Abstract

The opioid-like characteristics of mitragynine with biased μ-opioid receptor activation are attractive for pain and addiction therapy due to less addictive issue. Our previous work has shown the potential of delivering mitragynine through the skin but drug degradation hindered a reliable understanding of its permeation behaviour. This study aims to optimise the use of antioxidants in both the receptor medium and formulations for in vitro permeation studies of mitragynine (5%w/v) using single solvent systems. The optimised receptor medium with 0.01%w/v of ascorbic acid in phosphate buffer saline was chosen due to a high mitragynine recovery that also allowed the detection of a higher mitragynine amount permeated. Dimethyl sulphoxide and Transcutol ® achieved the highest mitragynine permeation (~ 10 – 15 µg/cm 2 ) and skin fluxes (~ 0.5 – 0.8 µg/cm 2 /h). While Maisine ® and propylene glycol achieved ~ 6 – 8 µg/cm 2 of mitragynine permeated. Labrasol ® and Lauroglycol™ showed a relatively low drug permeation (~ 1 – 4 μg/cm 2 ). Permeation data modelling showed that skin diffusion (high apparent diffusion coefficient) was identified as the major mechanism but skin partitioning (moderate to high apparent partition coefficient) became a determining factor for the overall permeation performance. Mass balance studies revealed low mitragynine recovery (< 80%) owing to solvent-induced degradation. Further optimisation of butylated hydroxytoluene incorporation into gel formulations with selected solvents resulted in excellent drug recovery and enhanced skin permeation, even at lower drug loadings. Overall, this study highlighted the importance of enhanced drug stability with antioxidant, facilitating a more accurate assessment of mitragynine’s skin permeation characteristics. Graphical Abstract

Bibliographic Information

JournalDrug Delivery and Translational Research
PublisherSpringer
Publication Date2025-11-01
Publication Year2025
Volume15
Issue11
Pages4202-4216
Document TypeJournal Article
Print ISSN2190-393X
eISSN2190-3948
DOI10.1007/s13346-025-01933-6

Access Information

NARA Access Coverage2011-01-01~Current
Journal Homepagehttps://www.springer.com/journal/13346
Publisher PageOpen Publisher Page
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