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一种新型热机械系统通过微消融增强亲水性活性剂的经皮递送。

A novel thermo-mechanical system enhanced transdermal delivery of hydrophilic active agents by fractional ablation.

作者信息

Sintov Amnon C, Hofmann Maja A

机构信息

Department of Biomedical Engineering, Faculty of Engineering Sciences, Laboratory for Biopharmaceutics, E.D. Bergmann Campus, Ben Gurion University of the Negev, Be'er Sheva 84105, Israel.

Department of Dermatology, Venerology and Allergy, Charité-Universitätsmedizin, Charitéplatz 1, 10115 Berlin, Germany.

出版信息

Int J Pharm. 2016 Sep 25;511(2):821-30. doi: 10.1016/j.ijpharm.2016.07.070. Epub 2016 Jul 29.

DOI:10.1016/j.ijpharm.2016.07.070
PMID:27480396
Abstract

The Tixel is a novel device based on a thermo-mechanical ablation technology that combines a sophisticated motion and a temperature control. The fractional technology is used to transfer a very precise thermal energy to the skin thereby creating an array of microchannels, accompanying by no signs of pain or inconvenience. This study aimed to evaluate the effect of the Tixel on the skin permeability of three hydrophilic molecular models: verapamil hydrochloride, diclofenac sodium, and magnesium ascorbyl phosphate. Tixel's gold-platted stainless steel tip heated to a temperature of 400°C was applied on skin for 8ms or 9ms at a protrusion of 400μm (the distance in which the tip protrudes beyond the distance gauge). The experiments were carried out partly in vivo in humans using a fluorescent dye and a confocal microscopy and partly in vitro using porcine skin and a Franz diffusion cell system. The results obtained in this study have shown that (a) no significant collateral damage to the skin tissue and no necrosis or dermal coagulation have been noted, (b) the microchannels remained open and endured for at least 6h, and (c) the skin permeability of hydrophilic molecules, which poorly penetrate the lipophilic stratum corneum barrier, was significantly enhanced by using Tixel's pretreatment.

摘要

Tixel是一种基于热机械消融技术的新型设备,它结合了复杂的运动和温度控制。分数技术用于将非常精确的热能传递到皮肤,从而形成一系列微通道,且无疼痛或不便迹象。本研究旨在评估Tixel对三种亲水性分子模型(盐酸维拉帕米、双氯芬酸钠和磷酸抗坏血酸镁)皮肤渗透性的影响。将加热至400°C的Tixel镀金不锈钢尖端以400μm的突出量(尖端突出超过距离测量仪的距离)在皮肤上施加8毫秒或9毫秒。实验部分在人体中使用荧光染料和共聚焦显微镜进行体内实验,部分在体外使用猪皮和弗兰兹扩散池系统进行实验。本研究获得的结果表明:(a)未观察到对皮肤组织的明显附带损伤,也未发现坏死或真皮凝固;(b)微通道保持开放且至少持续6小时;(c)使用Tixel预处理可显著提高亲水性分子穿透亲脂性角质层屏障较差的皮肤渗透性。

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