Enhancement of the bioavailability of an antihypertensive drug by transdermal protransfersomal system: formulation and in vivo study

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Date

2018

Journal Title

Journal ISSN

Volume Title

Type

Article

Publisher

Taylor and Francis Ltd

Series Info

Journal of Liposome Research
28

Abstract

Timolol Maleate (TiM), a nonselective ?-adrenergic blocker, is a potent highly effective agent for management of hypertension. The drug suffers from poor oral bioavailability (50%) due to its first pass effect and a short elimination half-life of 4 h; resulting in its frequent administration. Transdermal formulation may circumvent these problems in the form of protransfersomes. The aim of this study is to develop and optimize transdermal protransfersomal system of Timolol Maleate by film deposition on carrier method where protransfersomes were converted to transfersomes upon skin hydration following transdermal application under occlusive conditions. Two 2 3 full factorial designs were employed to investigate the influence of three formulation variables which were; phosphatidyl choline: surfactant molar ratio, carrier: mixture and the type of SAA each on particle size, drug entrapment efficiency and release rate. The optimized formulation was evaluated regarding permeation through hairless rat skin and compared with oral administration of aqueous solution on male Wistar rats. Optimized protransfersomal system had excellent permeation rate through shaved rat skin (780.69 ?g/cm 2 /h) and showed six times increase in relative bioavailability with prolonged plasma profile up to 72 h. A potential protransfresomal transdermal system was successfully developed and factorial design was found to be a smart tool in its optimization. � 2017 Informa UK Limited, trading as Taylor & Francis Group.

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Keywords

Antihypertensive, design-expert, liposomes, permeation, ultra-flexible vesicles, phosphatidylcholine, surfactant, timolol maleate, antihypertensive agent, drug carrier, liposome, nanoparticle, timolol, animal cell, animal experiment, animal tissue, area under the curve ratio, Article, drug absorption, drug bioavailability, drug determination, drug formulation, drug penetration, elimination half-life, factorial design, high performance liquid chromatography, hydration, in vitro study, in vivo study, lipid bilayer, male, maximum plasma concentration, nonhuman, particle size, pharmacokinetic parameters, priority journal, quantitative analysis, rat, sustained drug release, time to maximum plasma concentration, transdermal drug administration, transdermal protransfersomal system, animal, bioavailability, chemistry, cutaneous drug administration, drug formulation, drug release, metabolism, oral drug administration, procedures, skin, skin absorption, surface property, Wistar rat, Administration, Cutaneous, Administration, Oral, Animals, Antihypertensive Agents, Biological Availability, Drug Carriers, Drug Compounding, Drug Liberation, Liposomes, Male, Nanoparticles, Particle Size, Phosphatidylcholines, Rats, Wistar, Skin, Skin Absorption, Surface Properties, Surface-Active Agents, Timolol

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