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Enhanced Transdermal Delivery of Diclofenac Sodium via Conventional Liposomes, Ethosomes, and Transfersomes

机译:通过常规脂质体,脂质体和转移体增强双氯芬酸钠的透皮递送

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摘要

The aim of this study was to improve the transdermal permeation of Diclofenac sodium, a poorly water-soluble drug, employing conventional liposomes, ethosomes, and transfersomes. The prepared formulations had been characterized for the loaded drug amount and vesicle size. The prepared vesicular systems were incorporated into 1% Carbopol 914 gel, and a survey of in vitro drug release and drug retention into rat skin has been done on them using a modified Franz diffusion cell. The cumulative amount of drug permeated after 24 h, flux, and permeability coefficient were assessed. Stability studies were performed for three months. The size of vesicles ranged from 145 to 202 nm, and the encapsulation efficiency of the Diclofenac sodium was obtained between 42.61% and 51.72%. The transfersomes and ethosomes provided a significantly higher amount of cumulative permeation, steady state flux, permeability coefficient, and residual drug into skin compared to the conventional liposomes, conventional gel, or hydroethanolic solution. The in vitro release data of all vesicular systems were well fit into Higuchi model (RSD > 0.99). Stability tests indicated that the vesicular formulations were stable over three months. Results revealed that both ethosome and transfersome formulations can act as drug reservoir in skin and extend the pharmacologic effects of Diclofenac sodium.
机译:这项研究的目的是使用常规脂质体,脂质体和转移体,改善水溶性差的双氯芬酸钠的透皮渗透性。表征所制备的制剂的载药量和囊泡大小。将制备的囊泡系统掺入1%Carbopol 914凝胶中,并使用改良的Franz扩散池对它们的体外药物释放和药物在大鼠皮肤中的滞留进行了调查。评估24小时后渗透的药物累积量,通量和渗透系数。进行了三个月的稳定性研究。囊泡的大小在145至202nm之间,双氯芬酸钠的包封率在42.61%至51.72%之间。与常规脂质体,常规凝胶或氢乙醇溶液相比,传递体和质体提供了大量的累积渗透,稳态通量,渗透系数和残留药物进入皮肤。所有囊泡系统的体外释放数据都非常适合Higuchi模型(RSD> 0.99)。稳定性测试表明,囊泡制剂在三个月内稳定。结果表明,无论是体液还是转移体制剂都可以充当皮肤中的药物储存库,并扩展双氯芬酸钠的药理作用。

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