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Lasers as an approach for promoting drug delivery via skin

机译:激光作为促进药物通过皮肤传递的方法

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Introduction: Using lasers can be an effective drug permeation-enhancement approach for facilitating drug delivery into or across the skin. The controlled disruption and ablation of the stratum corneum (SC), the predominant barrier for drug delivery, is achieved by the use of lasers. The possible mechanisms of laser-assisted drug permeation are the direct ablation of the skin barrier, optical breakdown by a photomechanical wave and a photothermal effect. It has been demonstrated that ablative approaches for enhancing drug transport provide some advantages, including increased bioavailability, fast treatment time, quick recovery of SC integrity and the fact that skin surface contact is not needed. In recent years, the concept of using laser techniques to treat the skin has attracted increasing attention. Areas covered: This review describes recent developments in using nonablative and ablative lasers for drug absorption enhancement. This review systematically introduces the concepts and enhancement mechanisms of lasers, highlighting the potential of this technique for greatly increasing drug absorption via the skin. Lasers with different wavelengths and types are employed to increase drug permeation. These include the ruby laser, the erbium:yttrium-gallium-garnet laser, the neodymium-doped yttrium-aluminum-garnet laser and the CO2 laser. Fractional modality is a novel concept for promoting topical/transdermal drug delivery. The laser is useful in enhancing the permeation of a wide variety of permeants, such as small-molecule drugs, macromolecules and nanoparticles. Expert opinion: This potential use of the laser affords a new treatment for topical/transdermal application with significant efficacy. Further studies using a large group of humans or patients are needed to confirm and clarify the findings in animal studies. Although the laser fluence or output energy used for enhancing drug absorption is much lower than for treatment of skin disorders and rejuvenation, the safety of using lasers is still an issue. Caution should be used in optimizing the feasible conditions of the lasers in balancing the effectiveness of permeation enhancement and skin damage.
机译:简介:使用激光可以是一种有效的药物渗透增强方法,以促进药物进入或穿过皮肤的传递。角质层(SC)是药物递送的主要障碍,它的受控破坏和消融是通过使用激光来实现的。激光辅助药物渗透的可能机制是皮肤屏障的直接消融,光机械波引起的光学击穿和光热效应。已经证明,用于增强药物运输的消融方法具有一些优点,包括增加的生物利用度,快速的治疗时间,SC完整性的快速恢复以及不需要皮肤表面接触的事实。近年来,使用激光技术治疗皮肤的概念已引起越来越多的关注。涵盖领域:这篇综述描述了使用非烧蚀性和烧蚀性激光增强药物吸收的最新进展。这篇综述系统地介绍了激光的概念和增强机制,突出了该技术在极大地增加通过皮肤吸收药物方面的潜力。使用具有不同波长和类型的激光来增加药物渗透。这些激光器包括红宝石激光器,:钇镓石榴石激光器,掺钕钇铝石榴石激光器和CO2激光器。分数模态是促进局部/透皮药物递送的新概念。激光可用于增强各种渗透物的渗透,例如小分子药物,大分子和纳米颗粒。专家意见:激光的这种潜在用途为局部/透皮应用提供了一种新的治疗方法,具有显着的疗效。需要使用大量的人类或患者进行进一步的研究,以确认和澄清动物研究中的发现。尽管用于提高药物吸收的激光能量密度或输出能量远低于治疗皮肤疾病和年轻化的能量,但是使用激光的安全性仍然是一个问题。在平衡渗透增强效果和皮肤损伤的效率时,应谨慎选择优化激光器的可行条件。

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