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醇质体促进亲脂性药物经皮渗透的机制。

Mechanism of transdermal permeation promotion of lipophilic drugs by ethosomes.

作者信息

Yang Li, Wu Lifang, Wu Dongze, Shi Deshun, Wang Tai, Zhu Xiaoliang

机构信息

Department of Dermatology, Nanfang Hospital, Southern Medical University, Guangzhou.

Department of Medicine and Therapeutics, The Prince of Wales Hospital, The Chinese University of Hong Kong, Hong Kong.

出版信息

Int J Nanomedicine. 2017 Apr 26;12:3357-3364. doi: 10.2147/IJN.S134708. eCollection 2017.

Abstract

Ethosomes can promote the penetration of lipophilic drugs into the skin, but the underlying mechanism is still unknown. The purpose of this study was to investigate the mechanism of transdermal permeation promotion of lipophilic drugs by ethosomes. The formulation of ethosomes was optimized using the Box-Behnken experimental design, in which Rhodamine B and 1-palmitoyl-2-{12-[(7-nitro-2-1,3-benzoxadiazol-4-yl)amino]dodecanoyl}--glycero-3-phosphocholine were used to simulate a model lipophilic drug and act as a fluorescent tracer of ethosomal phospholipids, respectively. Liposomes with the same phospholipid concentration and a hydroethanolic solution with the same ethanol concentration were also prepared as controls. The percutaneous progression of the above fluorescent preparations was observed by confocal laser scanning microscopy, and the fluorescence intensity of the images was analyzed. The optimized ethosome formulation consisted of 2.45% yolk phospholipids, 30% ethanol, and 67.55% distilled water. The percutaneous permeation of Rhodamine B in the optimized ethosomes was superior to that in hydroethanolic solution (<0.05) and liposomes (<0.05). The ethosomes could penetrate the skin via the percutaneous pathway of the hair follicle and stratum corneum, while during the process of penetration, the vesicles were broken and the phospholipids were retained in the upper epidermis, with the test compounds penetrating gradually. The superior percutaneous penetration of ethosomes was linked to the synergistic effects of their ingredients. The percutaneous pathways of ethosomes included open hair follicles and stratum corneum pathways. In addition, the vesicles might break up during percutaneous penetration in the superficial layer of the skin, allowing the test compounds to keep permeating into the deeper layer alone, while the phospholipid was retained in the upper epidermis.

摘要

醇质体可促进亲脂性药物透皮吸收,但其潜在机制尚不清楚。本研究旨在探讨醇质体促进亲脂性药物透皮吸收的机制。采用Box-Behnken实验设计优化醇质体制剂,其中分别用罗丹明B和1-棕榈酰-2-{12-[(7-硝基-2,1,3-苯并恶二唑-4-基)氨基]十二烷酰}-甘油-3-磷酸胆碱模拟亲脂性模型药物和作为醇质体磷脂的荧光示踪剂。还制备了具有相同磷脂浓度的脂质体和具有相同乙醇浓度的氢乙醇溶液作为对照。通过共聚焦激光扫描显微镜观察上述荧光制剂的经皮进程,并分析图像的荧光强度。优化后的醇质体制剂由2.45%的蛋黄磷脂、30%的乙醇和67.55%的蒸馏水组成。优化后的醇质体中罗丹明B的经皮渗透率优于氢乙醇溶液(<0.05)和脂质体(<0.05)。醇质体可通过毛囊和角质层的经皮途径穿透皮肤,在穿透过程中,囊泡破裂,磷脂保留在上表皮,受试化合物逐渐渗透。醇质体优异的经皮渗透性与其成分的协同作用有关。醇质体的经皮途径包括开放的毛囊和角质层途径。此外,囊泡在皮肤表层经皮渗透过程中可能会破裂,使受试化合物能够单独持续渗透到更深层,而磷脂则保留在上表皮。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/28a0/5413537/de80b1174fc8/ijn-12-3357Fig1.jpg

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