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首页> 外文期刊>Journal of pharmaceutical sciences. >Erbium-Yttrium-Aluminum-Garnet Laser Irradiation Ameliorates Skin Permeation and Follicular Delivery of Antialopecia Drugs
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Erbium-Yttrium-Aluminum-Garnet Laser Irradiation Ameliorates Skin Permeation and Follicular Delivery of Antialopecia Drugs

机译:Y-钇-铝-石榴石激光辐照可改善脱发药物的皮肤渗透和卵泡输送

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摘要

Alopecia usually cannot be cured because of the available drug therapy being unsatisfactory. To improve the efficiency of treatment, erbium-yttrium-aluminum-garnet (Er-YAG) laser treatment was conducted to facilitate skin permeation of antialopecia drugs such as minoxidil (MXD), diphencyprone (DPCP), and peptide. In vitro and in vivo percutaneous absorption experiments were carried out by using nude mouse skin and porcine skin as permeation barriers. Fluorescence and confocal microscopies were used to visualize distribution of permeants within the skin. Laser ablation at a depth of 6 and 10 m enhanced MXD skin accumulation twofold to ninefold depending on the skin barriers selected. DPCP absorption showed less enhancement by laser irradiation as compared with MXD. An ablation depth of 10 m could increase the peptide flux from zero to 4.99 and 0.33 g cm(-2) h(-1) for nude mouse skin and porcine skin, respectively. The laser treatment also promoted drug uptake in the hair follicles, with DPCP demonstrating the greatest enhancement (sixfold compared with the control). The imaging of skin examined by microscopies provided evidence of follicular and intercellular delivery assisted by the Er-YAG laser. Besides the ablative effect of removing the stratum corneum, the laser may interact with sebum to break up the barrier function, increasing the skin delivery of antialopecia drugs. The minimally invasive, well-controlled approach of laser-mediated drug permeation offers a potential way to treat alopecia. This study's findings provide the basis for the first report on laser-assisted delivery of antialopecia drugs. (c) 2014 Wiley Periodicals, Inc. and the American Pharmacists Association J Pharm Sci 103:3542-3552, 2014
机译:由于可用的药物治疗效果不理想,脱发通常无法治愈。为了提高治疗效率,进行了-钇-铝-石榴石(Er-YAG)激光治疗,以促进抗脱发药如米诺地尔(MXD),双歧杆菌(DPCP)和肽的皮肤渗透。通过使用裸鼠皮肤和猪皮肤作为渗透屏障进行体外和体内经皮吸收实验。荧光和共聚焦显微术用于可视化渗透物在皮肤内的分布。根据所选的皮肤屏障,在6和10 m深度处进行激光消融可以使MXD皮肤积聚增加两倍至九倍。与MXD相比,DPCP吸收的激光照射增强作用较小。 10 m的消融深度可使裸鼠皮肤和猪皮肤的肽通量从零增加到4.99和0.33 g cm(-2)h(-1)。激光治疗还促进了毛囊中的药物吸收,其中DPCP表现出最大的增强作用(与对照相比增加了六倍)。通过显微镜检查对皮肤进行的成像为Er-YAG激光辅助的卵泡和细胞间递送提供了证据。除了去除角质层的消融作用外,激光还可能与皮脂相互作用,破坏屏障功能,从而增加抗脱发药在皮肤上的递送。激光介导的药物渗透的微创,控制良好的方法提供了一种治疗脱发的潜在方法。这项研究的发现为激光辅助脱发药物的首次报道提供了依据。 (c)2014年Wiley Periodicals,Inc.和美国药剂师协会J Pharm Sci 103:3542-3552,2014年

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