首页> 外文期刊>European journal of pharmaceutical sciences >Investigation of the enhancement effect of the natural transdermal permeation enhancers from Ledum palustre L. var. angustum N. Busch: Mechanistic insight based on interaction among drug, enhancers and skin
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Investigation of the enhancement effect of the natural transdermal permeation enhancers from Ledum palustre L. var. angustum N. Busch: Mechanistic insight based on interaction among drug, enhancers and skin

机译:从Ledum Palustre L. VAR中的天然透皮渗透增强剂增强效果的研究。 Angustum N. Busch:基于药物,增强剂和皮肤相互作用的机械洞察力

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It has been reported that natural transdermal permeation enhancers (TPEs) are superior in safety compared with synthetic TPEs. The essential oil (EO) ofLedum palustreL. var.angustumN. Busch had a strong enhancement effect on drug skin permeation based on previous studies. However, their enhancement mechanisms and safety were still unclear. The composition of the EO was determined using GC–MS. By using donepezil (DNP) as a model drug, the enhancement effect of the constituents of the EO and the EO were evaluated byin vitroskin permeation test. Confocal laser scanning microscopy (CLSM), attenuated total reflection-Fourier transform infrared spectroscopy (ATR-FTIR) and molecular docking were used to investigate the interaction among drug, enhancers and skin. Skin retention amount, apparent partition coefficient (K′) and molecular simulation were used to reflect the effect of the enhancers on drug partition into skin. The skin irritation potential was evaluated usingin vivoskin erythema analysis. The results showed that the main constituents of the EO were sabinene (SA), 4-terpineol (TE), p-cymene (CY) and cuminaldehyde (CU). CU was the main active constituent of the EO, which facilitated skin permeation of DNP. CU improved the skin permeation of DNP by increasing the mobility of the stratum corneum (SC) intercellular lipids, decreasing the interaction between DNP and the SC intercellular lipids, and improving the partition of DNP into the SC layer. Besides the superior enhancement effect, CU also showed a lower skin irritation potential compared with the EO. This work gave us some enlightenment that the effectiveness and safety of the natural transdermal permeation enhancers could be improved by understanding their composition and the enhancement mechanisms.
机译:据报道,与合成TPE相比,天然透皮渗透增强剂(TPE)的安全性优异。艾德林的精油(EO)。 var.angustumn。基于以前研究的药物皮肤渗透具有强烈的增强效果。然而,他们的增强机制和安全仍然不清楚。使用GC-MS测定EO的组成。通过使用Deypezil(DNP)作为模型药物,通过玻璃天药渗透试验评估EO和EO成分的增强效果。共聚焦激光扫描显微镜(CLSM),减弱总反射 - 傅里叶变换红外光谱(ATR-FTIR)和分子对接研究药物,增强剂和皮肤之间的相互作用。皮肤保留量,表观分配系数(K')和分子模拟用于反映增强剂对皮肤分配给皮肤的影响。使用Vivoskin红斑分析评估皮肤刺激潜力。结果表明,EO的主要成分是三丁烯(SA),4-萜烯醇(TE),P-CYMENE(CY)和泛醛(Cu)。 Cu是EO的主要活性组分,促进了DNP的皮肤渗透。 Cu通过增加角质层(SC)细胞间脂质的迁移率来改善DNP的皮肤渗透,降低DNP与SC细胞脂质之间的相互作用,并将DNP的分隔改善为SC层。除了出色的增强效果外,CU还与EO相比显示出较低的皮肤刺激潜力。这项工作给了我们一些启示,即通过了解它们的组成和增强机制,可以改善天然透皮渗透增强剂的有效性和安全性。

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