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Preparation and In Vivo Evaluation of Rosmarinic Acid-Loaded Transethosomes After Percutaneous Application on a Psoriasis Animal Model

Authors

RODRÍGUEZ LUNA, AZAHARA MARÍA, Talero, Elena , Avila-Roman, Javier , Romero, Ana Maria Fernandez , Rabasco, Antonio M. , Motilva, Virginia , Gonzalez-Rodriguez, Maria Luisa

External publication

No

Means

AAPS PHARMSCITECH

Scope

Article

Nature

Científica

JCR Quartile

SJR Quartile

JCR Impact

4.026

SJR Impact

0.594

Publication date

12/03/2021

ISI

000629454900003

Abstract

The topical use of rosmarinic acid (RA) in skin inflammatory pathologies is restricted due to its poor water solubility, poor permeability, and chemical instability. In this study, RA-loaded transethosomes-in-Carbopol(R) formulations have been developed to evaluate its anti-inflammatory activity on imiquimod-induced psoriasis-like skin inflammation in mice. In vitro release profiles demonstrated sustained behavior due to the retentive action of gel and the entrapment of RA into the vesicles. However, the low viscosity of the combined formulation increased the drug release rate. Animal evaluation of anti-inflammatory activity demonstrated that transethosomes-in-gel containing dexamethasone (Dex-TE-Gel), as positive control, showed effect in all the pro-inflammatory parameters evaluated, evidencing that these drug-loaded nanocarriers have been effectively reached the site of action. In addition, transethosomes-in-gel containing RA (RA-TE-Gel) formulations produced a great reduction in the punch edema (P < 0.001) and in TNF-alpha and IL-6 (P < 0.05). However, non-significant differences were obtained for IL-1 beta, IL17, and MPO. Despite the protecting effect of Carbopol(R) and transethosomes on oxidation index and antioxidant activity of RA over the 7 days of treatment, however, a degradation process of this antioxidant to caffeic acid may be the cause of these in vivo results. We have also checked that the pH existing into the intercellular space of damaged cells (pH 6.8) may be affecting. Therefore, our results suggest that RA-TE-Gel could act as an effective RA formulation for skin delivery; further studies will help to understand the loss of activity at the cellular level.

Keywords

transethosomes; rosmarinic acid; psoriasis; stability; caffeic acid

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