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塞来昔布经皮治疗系统的制备、优化及评价用于治疗类风湿关节炎炎症。

Preparation, optimization and evaluation of transdermal therapeutic system of celecoxib to treat inflammation for treatment of rheumatoid arthritis.

机构信息

Department of Pharmacy, Shah Abdul Latif University, old national highway, Khairpur, 66020 Sindh, Pakistan.

Institute of Chemical Sciences, Bahauddin Zakariya University, Bosan Road, 60000 Multan, Pakistan.

出版信息

An Acad Bras Cienc. 2021 Dec 1;93(suppl 4):e20201561. doi: 10.1590/0001-3765202120201561. eCollection 2021.

Abstract

The purpose of present study was to prepare transdermal therapeutic system that could enhance dissolution of poorly aqueous soluble drug Celecoxib and thus increase its skin permeation. Solubility studies screened triacetin as oil, cremophor RH 40 as surfactant and Polyethylene Glycol 400 as co-surfactant. Pseudoternary phase diagrams were constructed to find out microemulsion region. Independent variables (oil, Smix and water) concentration was used at high (+1) and low levels (-1) that would generate 17 different combinations of microemulsions. Microemulsions were characterized, optimized and evaluated. pH, viscosity, conductivities, refractive index, droplet size and poly-dispersity-index was investigated. Prepared microemulsions were oil in water, thermodynamically stable, isotropic, transparent, deflocculated and within narrow range of size. Mathematical equations and response surface plots related the independent and dependent variables. Optimum microemulsion ME6 was further incorporated with carbomer 940 gel base to produce microemulsion based gel. ME6 and its gel showed significant difference (p<0.05) from control gel. Stability studies showed prepared MEBG of celecoxib was stable during storage period. Skin irritation studies found the gel was safe and non-irritating to skin. Anti-inflammatory studies showed significant difference (p<0.05) compared to control gel. Thus, the therapeutic system was successfully developed and optimized using Box Behnken statistical design.

摘要

本研究的目的是制备经皮治疗系统,以提高难溶于水的药物塞来昔布的溶解度,从而增加其皮肤渗透。溶解度研究筛选出三醋酸甘油酯作为油相,吐温 RH40 作为表面活性剂,聚乙二醇 400 作为助表面活性剂。构建伪三元相图以找出微乳液区域。独立变量(油相、Smix 和水相)浓度采用高(+1)和低(-1)水平,共产生 17 种不同的微乳液组合。对微乳液进行了表征、优化和评价。考察了 pH 值、粘度、电导率、折射率、粒径和多分散指数。所制备的微乳液为油包水型,热力学稳定,各向同性,透明,无絮凝,粒径范围较窄。数学方程和响应面图将独立变量和依赖变量联系起来。进一步将最佳微乳液 ME6 与卡波姆 940 凝胶基质结合,制成微乳液基凝胶。ME6 及其凝胶与对照凝胶有显著差异(p<0.05)。稳定性研究表明,塞来昔布的 MEBG 在储存期间稳定。皮肤刺激性研究发现该凝胶对皮肤安全且无刺激性。抗炎研究表明,与对照凝胶相比有显著差异(p<0.05)。因此,使用 Box-Behnken 统计设计成功开发和优化了该治疗系统。

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