Development and Evaluation of Particulate Microcarriers of Adapalene as a Topical Delivery System

Q2 Pharmacology, Toxicology and Pharmaceutics Drug Delivery Letters Pub Date : 2019-08-20 DOI:10.2174/2210303109666190227163606
D. Divya, D Desai Namita
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Abstract

Adapalene is a promising third generation retinoid used in the topical treatment of acne vulgaris. However, the major drawback associated with conventional topical therapy of Adapalene is the ‘retinoid reaction’ which is dose-dependent and characterized by erythema, scaling and burning sensation at the application sites. Microparticulate drug delivery can play a major role in reducing side effects and providing better patient compliance due to targeted delivery. Adapalene microparticles were prepared using quasi emulsion solvent diffusion method. The effects of formulation variables including polymer ratios, amounts of emulsifier, drug loading and process variables such as stirring time and speed on the physical characteristics of microparticles were investigated. The developed microparticles were characterized by DSC and SEM. Adapalene microparticles were incorporated into Carbopol 971 NF gel for ease of topical delivery. Adapalene microparticulate topical gel showed sustained drug release over 8 hours in in vitro studies. The amount of drug retained in the rat skin during ex vivo studies was higher in the microparticulate topical gel (227.43 ± 0.83 µg/cm2) as compared to the marketed formulation (81.4 ± 1.11 µg/cm2) after 8 hours indicating localized and sustained drug action that can be useful in treating acne vulgaris. The safety of optimized Adapalene gel determined by skin irritation studies performed on Sprague Dawley rats showed no irritation potential. Microparticles can provide promising carrier systems to deliver Adapalene, improving patient compliance due to enhanced skin deposition, localized and sustained action with reduced associated irritant effects.
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阿达帕林微颗粒载体外用给药系统的研制与评价
阿达帕林是一种很有前景的第三代类视黄醇,用于寻常痤疮的局部治疗。然而,阿片仑常规局部治疗的主要缺点是“类视黄醇反应”,这种反应是剂量依赖性的,其特征是应用部位有红斑、鳞状和烧灼感。由于靶向给药,微颗粒给药可以在减少副作用和提高患者依从性方面发挥重要作用。采用准乳液溶剂扩散法制备阿达帕林微粒。研究了聚合物配比、乳化剂用量、药物负载量以及搅拌时间和速度等工艺变量对微粒物理特性的影响。通过DSC和SEM对所开发的微粒进行表征。阿达帕林微粒被掺入Carbopol 971 NF凝胶中,以便于局部递送。阿达帕林微粒局部凝胶在体外试验中显示药物持续释放超过8小时。在离体研究过程中,8小时后,微粒凝胶中大鼠皮肤中残留的药物量(227.43±0.83µg/cm2)高于市场上的制剂(81.4±1.11µg/cm2),这表明局部和持续的药物作用可用于治疗寻常痤疮。通过对Sprague-Dawley大鼠进行的皮肤刺激性研究确定的优化阿达帕林凝胶的安全性没有显示出刺激潜力。微粒可以提供有前景的载体系统来递送阿达帕林,由于增强了皮肤沉积、局部和持续的作用以及减少了相关的不良影响,从而提高了患者的依从性。
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来源期刊
Drug Delivery Letters
Drug Delivery Letters Pharmacology, Toxicology and Pharmaceutics-Pharmacology, Toxicology and Pharmaceutics (miscellaneous)
CiteScore
1.70
自引率
0.00%
发文量
30
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