Your browser doesn't support javascript.
loading
Show: 20 | 50 | 100
Results 1 - 1 de 1
Filter
Add filters








Language
Year range
1.
Nanomedicine Journal. 2014; 1 (2): 112-120
in English | IMEMR | ID: emr-171623

ABSTRACT

The purpose of the present study was to prepare and to evaluate a novel niosome as transdermal drug delivery system for propranolol hydrochloride and to compare the in vitro efficiency of niosome by either thin film hydration or hand shaking method. Niosomes were prepared by Thin Film Hydration [TFH] or Hand Shaking [HS] method. Propranolol niosomes were prepared using different surfactants [span20, 80] ratios and a constant cholesterol concentration. In vitro characterization of niosomes included microscopical observation, size distribution, laser light scattering evaluation, stability of propranolol niosomes and permeability of formulations in phosphate buffer [pH=7] through rat abdominal skin. The percentage of entrapment efficiency [%EE] increased with increase in surfactant concentration in all formulations. Among them, F3 formulation [containing span 80: cholesterol ratio of 3:1] showed the highest entrapment efficiency [86.74 +/- 2.01%], Jss [6.33microg/cm2.h] and permeability coefficient [7.02×10?3cm/h]. By increasing the percentage of entrapment efficiency [resulting in increase in surfactant concentration], the drug released time is not prolonged. Among all the formulations, F4 needed more time for maximum drug release. Among these formulations, F4 was also found to have the maximum vesicle size as compared to other formulations. It was observed that niosomal suspension prepared from span 80 was more stable than span 20. This study demonstrates that niosomal formulations may offer a promise transdermal delivery of propranolol which improves drug efficiency and can be used for controlled delivery of propranolol


Subject(s)
Animals, Laboratory , Administration, Cutaneous , Rats , Skin , Liposomes , In Vitro Techniques , Drug Delivery Systems
SELECTION OF CITATIONS
SEARCH DETAIL