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缬沙坦醇质体经皮给药系统的设计与开发及其在 Wistar 白化大鼠体内的临床前评估。

Design and development of ethosomal transdermal drug delivery system of valsartan with preclinical assessment in Wistar albino rats.

机构信息

Department of Pharmaceutics, Sinhgad College of Pharmacy, Pune, Maharashtra, India.

出版信息

J Liposome Res. 2013 Jun;23(2):119-25. doi: 10.3109/08982104.2012.753457. Epub 2013 Jan 16.

DOI:10.3109/08982104.2012.753457
PMID:23324030
Abstract

Valsartan (VLT) is a highly selective and orally active antihypertensive drug. However, its oral administration is associated with drawbacks like low bioavailability. The objective of this study was to design and develop a transdermal delivery system for VLT using ethosomal carriers to investigate their enhanced transdermal delivery potential. VLT ethosomes were prepared by cold method. VLT ethosomes were characterized by scanning electron microscopy. The prepared ethanolic liposomes were characterized to be spherical having low polydispersity of nano-size range with good entrapment efficiency. ETC5 ethosomal suspension with 4% of phospholipon 90H and 40% of ethanol was found to have highest entrapment efficiency, i.e. 80.230 ± 0.8748%. The permeation study of ethosomes was evaluated by ex vivo diffusion study through rat abdominal skin using Franz's diffusion cells and ETC5 ethosomal suspension was found to have highest permeation with flux of 92.819 ± 1.539 µg/cm²/h, when compared to the permeation profiles of drug solutions either in water or in a water-ethanol mixture. Transdermal application of ethosomal VLT on Wistar rats showed better and prolonged antihypertensive activity in comparison to orally administered VLT suspension by virtue of transdermal permeation through Wistar rat skin. Histopathological study of skin applied with ETC5 showed intercellular permeation across skin by dissolving intercellular lipids in epidermis without causing any rigorous changes in the skin cellular structure. In conclusion, ethosomes enabled the transdermal permeation of VLT, which amply proves its superiority over oral administration for antihypertensive treatment.

摘要

缬沙坦(VLT)是一种高度选择性和口服有效的降压药物。然而,其口服给药存在生物利用度低等缺点。本研究旨在设计和开发一种使用醇质体载体的 VLT 透皮给药系统,以研究其增强的透皮传递潜力。VLT 醇质体通过冷法制备。通过扫描电子显微镜对 VLT 醇质体进行了表征。所制备的乙醇脂质体表现为具有低多分散性的纳米级球形,具有良好的包封效率。发现含有 4%磷脂酰 90H 和 40%乙醇的 ETC5 醇质体混悬剂具有最高的包封效率,即 80.230±0.8748%。通过Franz 扩散池进行的大鼠腹部皮肤离体扩散研究评估了醇质体的渗透研究,发现 ETC5 醇质体混悬剂具有最高的渗透,通量为 92.819±1.539μg/cm²/h,与水或水-乙醇混合物中的药物溶液的渗透谱相比。与口服缬沙坦混悬剂相比,将醇质体 VLT 经皮应用于 Wistar 大鼠显示出更好和更持久的降压活性,这是由于通过 Wistar 大鼠皮肤透皮渗透。ETC5 皮肤应用的组织病理学研究表明,醇质体通过溶解表皮中的细胞间脂质来实现细胞间渗透,而不会对皮肤细胞结构造成任何严重变化。总之,醇质体能够实现 VLT 的透皮渗透,充分证明其在降压治疗方面优于口服给药。

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