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Transdermal permeation of Zanthoxylum bungeanum essential oil on TCM components with different lipophilicity

机译:不同亲脂性的中医组分Zanthoxylum精油的透皮渗透

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摘要

Objective:To investigate the percutaneous penetration enhancement effect of essential oil from Zanthoxylum bungeanum Maxim.(Z.bungeanum oil)on active components in externally-applied traditional Chinese medicines.Methods:Five model drugs,geniposide,puerarin,ferulic acid,tetramethylpyrazine,and osthole,were chosen based on their lipophilicity and tested using in vitro transdermal permeation studies consisting of Franz diffusion cells and full thickness rat abdominal skin.Scanning electron microscopy was employed to observe the morphological changes of rat skin tissue after treatment with Z.bungeanum oil.The molecular interactions between the oil and the polar head groups in stratum corneum(SC)lipids were monitored using molecular dynamic simulation,and the SC/vehicle partition coefficients and saturation solubilities of the selected model drugs treated with and without the oil were also determined to ascertain its mechanisms of action.Results:As oil concentration increased,the log ERflow trended toward a negative linear relationship with the lipophilicity of drugs.After treatment with Z.bungeanum oil,a mild lifting up and wrinkle on the SC surface were observed,and appeared to become more pronounced as oil concentration increased.There was no significant difference between the control and the Z.bungeanum oil at different concentrations in terms of saturation solubility of GP,while saturation solubilities of the 4 other drugs gradually increased as oil concentration increased.The oxygen-containing constituents in Z.bungeanum oil,such as terpinen-4-ol and 1,8-cineole,which accounted for 57.95%of total oil,could form stable hydrogen bonds with the polar head group of ceramide 3.Conclusion:Z.bungeanum oil facilitated transdermal permeation of drugs with different lipophilicity,including the extremely hydrophilic and lipophilic drugs,whereas it exhibited greater enhancement activity for strongly hydrophilic drugs.The mechanisms of transdermal permeation enhancement by the oil could be explained with SC/vehicle partition coefficient,saturation solubility,and the interactions with SC lipids.
机译:目的:探讨Zanthoxylum Bungeanum Maxim精油的经皮渗透性增强效果。(Z.Bungeanum油)在外部应用中药中的活性成分。方法:五种模型药物,栀子,葛根素,阿魏酸,四甲基吡嗪和基于对亲脂性和使用的体外透皮渗透研究选择了胞趾孔,该研究由FRANZ扩散细胞和全厚度大鼠腹部皮肤组成。使用Z.Bungeanum油处理后的扫描电子显微镜检查大鼠皮肤组织的形态变化。使用分子动态模拟监测地层内肌脂质(SC)脂质中的油和极性头部的分子相互作用,并且还测定了用且没有油处理的所选模型药物的SC /车辆分配系数和饱和溶解度。确定其行动机制。结果:随着石油浓度增加,日志Erflo W趋向于与药物的亲脂性的负线性关系。用Z.bungeanum油处理,观察到SC表面的温和升降和皱纹,并且随着油浓度的增加而变得更加明显。没有显着差异在GP的饱和溶解度方面的控制和Z.Bungeanum油之间的不同浓度,而4种其他药物的饱和溶解度随着油浓度的增加而逐渐增加。Z.Bungeanum油中的含氧成分,如Terpinen- 4-OL和1,8-桉油总油脂的57.95%,可以与神经元首的透明酰胺组形成稳定的氢键3.结论:Z.Bungeanum石油促进具有不同亲脂性药物的药物透皮渗透,包括极其亲水性和亲脂性药物,而它表现出较强亲水药物的提高活性。透皮渗透的机制油可以用SC /载体分配系数,饱和溶解度和与SC脂质的相互作用来解释。

著录项

  • 来源
    《中医科学杂志(英文)》 |2016年第003期|P.157-167|共11页
  • 作者单位

    Department of Pharmaceutics School of Chinese Materia Medica Beijing University of Chinese Medicine Beijing 100102 PR ChinaShandong Dyne Marine Biopharmaceutical Co.Ltd Weihai Shandong 264300 PR China;

    Department of Pharmaceutics School of Chinese Materia Medica Beijing University of Chinese Medicine Beijing 100102 PR China;

    Shandong Dyne Marine Biopharmaceutical Co.Ltd Weihai Shandong 264300 PR China;

    Shandong Dyne Marine Biopharmaceutical Co.Ltd Weihai Shandong 264300 PR China;

    Department of Pharmaceutics School of Chinese Materia Medica Beijing University of Chinese Medicine Beijing 100102 PR China;

    Department of Pharmaceutics School of Chinese Materia Medica Beijing University of Chinese Medicine Beijing 100102 PR China;

    Department of Pharmaceutics School of Chinese Materia Medica Beijing University of Chinese Medicine Beijing 100102 PR China;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 chi
  • 中图分类 中国工业经济;
  • 关键词

    Zanthoxylum bungeanum Maxim.; Essential oil; Penetration enhancer; Transdermal delivery; Molecular dynamic simulation;

    机译:Zanthoxylum Bungeanum Maxim。;精油;渗透增强剂;透皮递送;分子动态模拟;
  • 入库时间 2022-08-19 04:49:11
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