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1.
AAPS PharmSciTech ; 19(4): 1574-1581, 2018 May.
Article in English | MEDLINE | ID: mdl-29484614

ABSTRACT

To promote transungual permeation of nystatin (NYST), molecule with high molecular weight, no water-soluble, amphoteric by iontophoresis. The synergic effect of the combination of cetylpyridinium chloride, CPC, or polyoxyethylene (20) sorbitan monooleate, TW80, and iontophoresis was investigated. In vitro permeation experiments were carried out through bovine hoof slices using vertical diffusion cells. A low current density (0.2 mA/cm2) was applied by introducing Ag/AgCl electrodes in the donor (anode) and receptor (cathode) chambers. The donor phase consisted of a solution, a suspension, or gel-type vehicles containing NYST and surfactants in pH 5.6 HEPES buffer. The addition of CPC to NYST suspension (SOSP) produced a fivefold increase on the permeability of the bovine hoof membrane to the drug. The application of anodal iontophoresis further improved NYST flux. Conversely, NYST transungual permeation was not influenced by TW80 either in the passive diffusion or iontophoretic flux. Furthermore, the iontophoretic treatment does not appear to induce irreversible alterations to the hoof bovine membranes. The present work demonstrated the efficacy of iontophoresis as a treatment for different nail pathologies with large molecules very slightly soluble in water without irreversibly affecting the nail structure. A synergistic effect between CPC and iontophoresis was observed.


Subject(s)
Hoof and Claw/drug effects , Hoof and Claw/metabolism , Iontophoresis/methods , Nystatin/chemistry , Nystatin/metabolism , Administration, Cutaneous , Animals , Anti-Bacterial Agents/administration & dosage , Anti-Bacterial Agents/chemistry , Anti-Bacterial Agents/metabolism , Cattle , Dose-Response Relationship, Drug , Excipients/administration & dosage , Excipients/chemistry , Excipients/metabolism , Nystatin/administration & dosage , Permeability/drug effects
2.
Int J Pharm ; 516(1-2): 45-51, 2017 Jan 10.
Article in English | MEDLINE | ID: mdl-27836753

ABSTRACT

The aim of this study was to verify the effect of several cyclic onium based ionic liquids (ILs), including mono- and dicationic derivatives of 1,4-diazabicyclo[2.2.2]octane (DABCO), a dialkyl morpholinium salt and a Brønsted acidic IL, as enhancers of the in vitro transdermal permeation and skin retention of diltiazem through and into hairless rat skin. The drug was used as both the hydrochloride salt (DZHCl) and the free base (DZB) to highlight the relationship between the enhancement effect and the physico-chemical characteristics of the active agent. Permeation tests were carried out using Gummer-type diffusion cells and excised rat skin with a 0.005M aqueous solution of diltiazem hydrochloride or diltiazem free base with and without the addition of 1% w/w ionic liquids. At the end of the permeation experiments with diltiazem hydrochloride, a suitable extraction procedure allowed for the determination of the drug content retained in the skin. Depending on the ionic liquid structure, a significant enhancement in diltiazem hydrochloride levels in the receiving phase was observed, and the transdermal permeation of the diltiazem free base was markedly increased by treatment with all of the ionic liquids. N-dodecyldabco bromide was the best enhancer for both salified and free base drug forms, even though it showed a certain toxicity. On the other hand, N-methyl-N-decylmorpholinium bromide showed a good balance between enhancer activity and cytotoxicity.


Subject(s)
Calcium Channel Blockers/administration & dosage , Diltiazem/administration & dosage , Drug Delivery Systems , Ionic Liquids/chemistry , Administration, Cutaneous , Animals , Calcium Channel Blockers/pharmacokinetics , Chemistry, Pharmaceutical/methods , Diltiazem/pharmacokinetics , Excipients/chemistry , Male , Permeability , Rats , Rats, Hairless , Skin/metabolism , Skin Absorption
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