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Enhanced topical paromomycin delivery for cutaneous leishmaniasis treatment: Passive and iontophoretic approaches
Fernando A P de Sá1, Jayanaraian F M Andrade1, Thamires C Miranda1
1Laboratory of Food, Drugs, and Cosmetics (LTMAC), University of Brasilia (UnB), 70910-900, Brasília, DF, Brazil.
Abstract:
Conventional treatments for cutaneous leishmaniasis, a neglected vector-borne infectious disease, can frequently lead to serious adverse effects. Paromomycin (PAR), an aminoglycoside antibiotic, has been suggested for the topical treatment of disease-related lesions, but even when formulated in high drug-loading dosage forms, presents controversial efficacy. The presence of five ionizable amino groups hinder its passive cutaneous penetration but make PAR an excellent candidate for iontophoretic delivery. The objective of this study was to verify the feasibility of using iontophoresis for cutaneous PAR delivery and to propose a topical passive drug delivery system that could be applied between iontophoretic treatments. For this, in vitro iontophoretic experiments evaluated different application durations (10, 30, and 360 min), current densities (0.1, 0.25, and 0.5 mA/cm2), PAR concentrations (0.5 and 1.0 %), and skin models (intact and impaired porcine skin). In addition, 1 % PAR hydrogel had its penetration profile compared to 15 % PAR ointment in passive transport. Results showed iontophoresis could deliver suitable PAR amounts to dermal layers, even in short times and with impaired skin. Biodistribution assays showed both iontophoretic transport and the proposed hydrogel delivered higher PAR amounts to deeper skin layers than conventional ointment, even though applying 15 times less drug. To our knowledge, this is the first report of PAR drug delivery enhancement by iontophoresis. In summary, the association of iontophoresis with a topical application of PAR gel seems appropriate for improving cutaneous leishmaniasis treatment.
Insights
Iontophoresis effectively delivers paromomycin (PAR) for cutaneous leishmaniasis treatment, enhancing drug penetration. A topical PAR hydrogel further improves delivery compared to conventional ointments, offering a promising treatment strategy.
Area of Science:
- Pharmacology
- Dermatology
- Biomedical Engineering
Background:
- Cutaneous leishmaniasis treatments often cause adverse effects.
- Paromomycin (PAR) efficacy is limited by poor skin penetration.
- PAR's ionizable groups make it suitable for iontophoretic delivery.
Purpose of the Study:
- To assess iontophoresis for cutaneous PAR delivery.
- To develop a topical PAR delivery system for inter-treatment application.
- To enhance PAR delivery for improved leishmaniasis treatment.
Main Methods:
- In vitro iontophoresis experiments with varying durations, current densities, and PAR concentrations.
- Utilized intact and impaired porcine skin models.
- Compared 1% PAR hydrogel penetration to 15% PAR ointment in passive transport.
Main Results:
- Iontophoresis delivered adequate PAR amounts to dermal layers, even with impaired skin.
- Biodistribution assays showed enhanced PAR delivery to deeper skin layers with iontophoresis and hydrogel.
- Both methods delivered more PAR than conventional ointment using significantly less drug.
Conclusions:
- Iontophoresis is feasible for enhancing cutaneous PAR delivery.
- A topical PAR hydrogel complements iontophoresis for improved treatment.
- Combining iontophoresis with a PAR gel offers a viable strategy for cutaneous leishmaniasis.
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