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首页> 外文期刊>Chemical biology and drug design >Permeation‐enhancing effects and mechanisms of borneol and menthol on ligustrazine: A multiscale study using in vitro and coarse‐grained molecular dynamics simulation methods
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Permeation‐enhancing effects and mechanisms of borneol and menthol on ligustrazine: A multiscale study using in vitro and coarse‐grained molecular dynamics simulation methods

机译:渗透 - 增强冰酚和薄荷醇对川芎嗪的影响和机制:使用体外粗粒分子动力学模拟方法的多尺度研究

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摘要

> Borneol ( BO ) and menthol ( MEN ) are two widely used natural permeation enhancers in the transdermal drug delivery system. In previous studies, their permeation enhancement effects and mechanisms of action on the hydrophobic drug osthole (logP?=?3.8) and hydrophilic drug 5‐fluorouracil (logP?=??0.9) have been studied. In this study, ligustrazine ( LTZ ), whose logP is 1.3, was used as a model drug to provide a comprehensive understanding of the influence of its logP on the permeation‐enhancing effects of BO and MEN . Both BO and MEN enhanced the permeation of LTZ through the skin stratum corneum, as determined using the modified Franz diffusion cell experiment. The enhancement mechanisms were illustrated by coarse‐grained molecular dynamics simulations as follows: at low concentrations, the enhancing ratio of MEN was higher than that of BO because of the stronger perturbation effects of MEN on the lipid bilayer, making it looser and facilitating LTZ diffusion. However, at high concentrations, in addition to the diffusion mechanism, BO induced the formation of water channels to improve the permeation of LTZ ; however, MEN had no significant effects through this mechanism. Their results were different from those found with osthole and 5‐fluorouracil and have been discussed in this study.
机译:

播种机( BO )和MENTHOL( MEN )在透皮药物递送系统中是两种广泛使用的自然渗透增强剂。在先前的研究中,已经研究了渗透增强效应和疏水性药物口鼻孔(LOGP?= 3.8)和亲水药物5-氟尿嘧啶(LOGP?= 0.9)的渗透增强效果和作用机制。在该研究中,LogP为1.3的Ligustrazine( LTZ )被用作模型药物,以全面了解其LOGP对 Bo men 。如使用改性的FRANZ扩散电池实验确定的, Bo Men Men 增强了通过皮肤层内角质的渗透。通过粗粒的分子动力学模拟来说明增强机制:在低浓度下,由于扰动效应更强, Men 的增强比率高于 Bo-Fc>在脂质化双层的 Men ,使其放松并促进 LTZ 扩散。然而,在高浓度下,除了扩散机制之外, Bo 诱导水道的形成,以改善 LTZ 的渗透;然而, MEN 通过这种机制没有显着影响。它们的结果与患有口孔和5-氟尿嘧啶的结果不同,并且已经在本研究中讨论过。

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