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薄荷醇联合给药增强吲哚美辛固体纳米粒的经皮渗透。

Combination with l-Menthol Enhances Transdermal Penetration of Indomethacin Solid Nanoparticles.

机构信息

Faculty of Pharmacy, Kindai University, 3-4-1 Kowakae, Higashi-Osaka, Osaka 577-8502, Japan.

Faculty of Pharmacy, Keio University, 1-5-30 Shibakoen, Minato-ku, Tokyo 105-8512, Japan.

出版信息

Int J Mol Sci. 2019 Jul 25;20(15):3644. doi: 10.3390/ijms20153644.

Abstract

This study designed the transdermal formulations containing indomethacin (IMC)-1% IMC was crushed with 0.5% methylcellulose and 5% 2-hydroxypropyl-β-cyclodextrin by the bead mill method, and the milled IMC was gelled with or without 2% l-menthol (a permeation enhancer) by Carbopol 934 (without menthol, N-IMC gel; with menthol, N-IMC/MT gel). In addition, the drug release, skin penetration and percutaneous absorption of the N-IMC/MT gel were investigated. The particle sizes of N-IMC gel were approximately 50-200 nm, and the combination with l-menthol did not affect the particle characterization of the transdermal formulations. In an in vitro experiment using a Franz diffusion cell, the skin penetration in N-IMC/MT gel was enhanced than the N-IMC gel, and the percutaneous absorption () from the N-IMC/MT gel was 2-fold higher than the N-IMC gel. On the other hand, the skin penetration from the N-IMC/MT gel was remarkably attenuated at a 4 °C condition, a temperature that inhibits all energy-dependent endocytosis. In conclusion, this study designed transdermal formulations containing IMC solid nanoparticles and l-menthol, and found that the combination with l-menthol enhanced the skin penetration of the IMC solid nanoparticles. In addition, the energy-dependency of the skin penetration of IMC solid nanoparticles was demonstrated. These findings suggest the utility of a transdermal drug delivery system to provide the easy application of solid nanoparticles (SNPs).

摘要

本研究设计了包含吲哚美辛(IMC)的透皮制剂-1%的 IMC 与 0.5%的甲基纤维素和 5%的 2-羟丙基-β-环糊精一起通过珠磨法粉碎,粉碎的 IMC 与或不与 2%的 l-薄荷醇(渗透增强剂)一起用 Carbopol 934 (无薄荷醇,N-IMC 凝胶;含薄荷醇,N-IMC/MT 凝胶)制成凝胶。此外,还研究了 N-IMC/MT 凝胶的药物释放、皮肤渗透和经皮吸收。N-IMC 凝胶的粒径约为 50-200nm,与 l-薄荷醇结合不影响透皮制剂的颗粒特征。在使用 Franz 扩散池的体外实验中,N-IMC/MT 凝胶中的皮肤渗透增强,并且 N-IMC/MT 凝胶的经皮吸收()比 N-IMC 凝胶高 2 倍。另一方面,N-IMC/MT 凝胶的皮肤渗透在 4°C 条件下明显减弱,4°C 温度会抑制所有依赖能量的内吞作用。总之,本研究设计了包含 IMC 固体纳米颗粒和 l-薄荷醇的透皮制剂,并发现与 l-薄荷醇结合可增强 IMC 固体纳米颗粒的皮肤渗透。此外,还证明了 IMC 固体纳米颗粒皮肤渗透的能量依赖性。这些发现表明,透皮给药系统具有提供易于应用的固体纳米颗粒(SNP)的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/13d2/6695644/908eceddd6db/ijms-20-03644-g001.jpg

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