Effect of hydrophilic and hydrophobic polymers on permeation of S-amlodipine besylate through intercalated polymeric transdermal matrix: 3(2) designing, optimization and characterization.
Administration, Cutaneous
Amlodipine
/ administration & dosage
Animals
Calcium Channel Blockers
/ administration & dosage
Delayed-Action Preparations
/ administration & dosage
Drug Compounding
/ methods
Drug Delivery Systems
/ methods
Drug Design
Drug Liberation
Excipients
/ chemistry
Hydrophobic and Hydrophilic Interactions
Permeability
Polymers
/ chemistry
Rats
Rats, Wistar
Skin
/ drug effects
Skin Absorption
/ drug effects
Transdermal Patch
Transdermal matrix
hydrophilic polymer
hydrophobic polymer
intercalation
penetration enhancer
Journal
Drug development and industrial pharmacy
ISSN: 1520-5762
Titre abrégé: Drug Dev Ind Pharm
Pays: England
ID NLM: 7802620
Informations de publication
Date de publication:
Apr 2019
Apr 2019
Historique:
pubmed:
12
1
2019
medline:
15
6
2019
entrez:
12
1
2019
Statut:
ppublish
Résumé
Innovation in material science has made it possible to fabricate a pharmaceutical material of modifiable characteristics and utility, in delivering therapeutics at a sustained/controlled rate. The objective of this study is to design and optimize the controlled release transdermal films of S-Amlodipine besylate by intercalating hydrophilic and hydrophobic polymers. 3(2) factorial design and response surface methodology was utilized to prepare formulations by intercalating the varied concentration of polymers(A) and penetration enhancer(B) in solvent. The effect of these independent factors on drug release and flux was investigated to substantiate the ex-vivo, stability and histological findings of the study. FTIR, DSC revealed the compatibility of drug with polymers; however, the semicrystallinity in drug was observed under PXRD. SEM micrographs showed homogeneous dispersion and entanglement of drug throughout the matrix. Results from the permeation study suggested the significant effect of factors on the ex vivo permeation of drug. It was observed that drug release was found to be increased with an increase in hydrophilic polymer concentration and PE. The formulations having polymers (EC:PVPK-30) at 7:3 showed maximum drug release with highest flux (102.60 ± 1.12 µg/cm Thus, results indicated that the prepared intercalated transdermal matrix can be a promising nonoral carrier to deliver effective amounts of drug.
Identifiants
pubmed: 30633579
doi: 10.1080/03639045.2019.1569035
doi:
Substances chimiques
Calcium Channel Blockers
0
Delayed-Action Preparations
0
Excipients
0
Polymers
0
Amlodipine
1J444QC288
Types de publication
Journal Article
Langues
eng
Sous-ensembles de citation
IM