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扶阳罐物理促渗技术增强延胡索止痛膏的疗效。

Fu'cupping Physical Permeation-Enhancing Technique Enhances the Therapeutic Efficacy of Corydalis yanhusuo Gel Plaster.

机构信息

College of Pharmaceutical Sciences, Guizhou University of Traditional Chinese Medicine, Guiyang, China.

National Engineering Technology Research Center for Miao Medicine, Guizhou University of Traditional Chinese Medicine, Guiyang, China.

出版信息

Planta Med. 2024 Sep;90(11):876-884. doi: 10.1055/a-2344-8841. Epub 2024 Jun 14.

Abstract

, a traditional Chinese medicine, is widely used to treat various pains, and its active ingredients are alkaloids. This study aimed to develop a new type of transdermal gel plaster containing the extract of . Studies have shown that Fu'cupping physical permeation-enhancing technique can promote the penetration of alkaloids and improve the efficacy of drugs. A transdermal gel plaster containing the extract of was prepared and optimized using an orthogonal experimental design. The skin permeation ability of the gel plaster was studied , while the anti-inflammatory and analgesic effects of the prepared patch alone or with Fu'cupping physical permeation-enhancing technique were evaluated in a rat model. The formulation of a gel plaster containing extract was successfully prepared with an optimized composition consisting of glycerin (15 g), sodium polyacrylate (2 g), silicon dioxide (0.3 g), ethanol (2 g), aluminum oxide (0.1 g), citric acid (0.05 g), the extract (3 g), and water (15 g). The cumulative transdermal permeation of dehydrocorydaline, corypalmine, tetrahydropalmatine, and corydaline in 24 h was estimated to be 569.7 ± 63.2, 74.5 ± 13.7, 82.4 ± 17.2, and 38.9 ± 8.1 µg/cm, respectively. The diffusion of dehydrocorydaline and corydaline followed the zero-order kinetics profile, while that of corypalmine and tetrahydropalmatine followed a Higuchi equation. The prepared gel plaster significantly reduced paw swelling, downregulated inflammatory cytokines, and mitigated pain induced by mechanical or chemical stimuli. The Fu'cupping physical permeation-enhancing technique further improved the anti-inflammatory and analgesic effects of the patch. The combined application of the Fu'cupping physical permeation-enhancing technique and the alkaloid gel plaster may be effective against inflammation and pain.

摘要

中药虎杖被广泛用于治疗各种疼痛,其有效成分是生物碱。本研究旨在开发一种新型含虎杖提取物的透皮凝胶贴膏。研究表明,拔罐物理促渗技术可以促进生物碱的渗透,提高药物疗效。采用正交实验设计,制备并优化了含虎杖提取物的透皮凝胶贴膏。研究了凝胶贴膏的皮肤渗透能力,同时在大鼠模型中评价了单独使用和结合拔罐物理促渗技术制备的贴膏的抗炎和镇痛作用。成功制备了一种含虎杖提取物的凝胶贴膏,其优化配方由甘油(15g)、聚丙烯酸钠(2g)、二氧化硅(0.3g)、乙醇(2g)、氧化铝(0.1g)、柠檬酸(0.05g)、虎杖提取物(3g)和水(15g)组成。在 24 小时内,德枯枯灵、苦参碱、延胡索乙素和紫堇碱的累积透皮渗透量估计分别为 569.7±63.2、74.5±13.7、82.4±17.2 和 38.9±8.1μg/cm。德枯枯灵和紫堇碱的扩散符合零级动力学模型,而苦参碱和延胡索乙素的扩散符合 Higuchi 方程。制备的凝胶贴膏显著减轻了足肿胀,下调了炎症细胞因子,并缓解了机械或化学刺激引起的疼痛。拔罐物理促渗技术进一步提高了贴膏的抗炎和镇痛作用。拔罐物理促渗技术与生物碱凝胶贴膏的联合应用可能对炎症和疼痛有效。

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