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首页> 外文期刊>Saudi Pharmaceutical Journal >Formulation and characterization of lornoxicam-loaded cellulosic-microsponge gel for possible applications in arthritis
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Formulation and characterization of lornoxicam-loaded cellulosic-microsponge gel for possible applications in arthritis

机译:洛昔昔康纤维素 - 微孢子凝胶的配方与表征在关节炎中可能的应用

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摘要

Rheumatoid arthritis (RA) is an autoimmune disease associated with severe joint pain. Herein, we report lornoxicam loaded cellulosic microsponge gel formulation with sustained anti-inflammatory effects that are required to manage arthritic pain. The microsponges were formulated using quasi emulsion-solvent diffusion method employing four different surfactant systems, namely polyvinyl alcohol (PVA), Tween80, Gelucire 48/16 and Gelucire 50/13. All the lornoxicam loaded microsponge formulations were extensively characterized with a variety of analytical tools. The optimized microsponge formulation was then converted into gel formulation. The lornoxicam loaded microsponge gel formulation had adequate viscosity and sufficient pharmaceutical properties as confirmed by the texture analysis and the drug release followed Super case II transport. It is noteworthy that we described the preparation of a new cellulosic polymers based microsponge system for delivery of lornoxicam to provide quick as well as lasting (sustained) anti-inflammatory effects in rats using carrageenan induced rat paw edema model. We were able to demonstrate a 72% reduction in inflammation within 4?h using the optimize transdermal gel formulation utilizing Transcutol P as permeation enhancer and with the aid of skin micro-piercing by microneedles, hence, demonstrating the potential of this microsponge gel formulation in arthritis management.
机译:类风湿性关节炎(RA)是一种与严重关节疼痛相关的自身免疫性疾病。在此,我们向洛昔康含有持续的抗炎作用报告林昔康载纤维素微孢子凝胶制剂,其需要治疗关节炎疼痛。使用采用四种不同的表面活性剂体系的准乳液 - 溶剂扩散法配制微梭,即聚乙醇(PVA),Tween80,Gelucire 48/16和Gelucire 50/13。所有Lornoxicam负载的微孢子配方都具有广泛的特征,具有各种分析工具。然后将优化的微孢子制剂转化为凝胶制剂。 Lornoxicam负载的微孢子凝胶配方具有足够的粘度和足够的药物性质,通​​过纹理分析证实,药物释放遵循超级案例II运输。值得注意的是,我们描述了制备基于新的纤维素聚合物的微孢子系统,用于促进洛昔康,在使用角叉菜胶诱导的大鼠PAW水肿模型提供大鼠的持久(持续的)抗炎作用。利用经扫描PAS作为渗透增强剂的优化透皮凝胶配方,借助微针的渗透性增强剂,我们能够在4〜H内证明42%的炎症减少72%。因此,通过微针的皮肤微刺穿,表明了这种微孢子凝胶配方的潜力关节炎管理。

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