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Partial ablation of stratum corneum by UV (193 nm) or IR (2.94 μm) pulsed lasers to enhance transdermal drug delivery rate

机译:通过UV(193nm)或IR(2.94μm)脉冲激光器部分消融地层脉冲脉冲脉冲激光,以增强透皮药物递送速率

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To develop the noninvasive transdermal drug delivery system, pulsed lasers (argon-fluoride excimer laser (ArF laser) and erbium: yittrium aluminum garnet laser (Er:YAG laser)) were used to partially ablate the stratum corneum (SC). Because of the barrier function of the SC to drug permeation, the number of drugs in particular macromolecules used in the transdermal drug delivery system without skin irritation has been limited. Ultrastructural changes on the SC surface of laser ablated Yucatan micropig skin in vitro were observed with environmental scanning electron microscope. This result indicated that the structural changes varied according to each laser sources and irradiation conditions (laser fluences and numbers of pulses). Many granular structures of about 2 nm were observed in the ablated sites on the ArF laser with lower fluence exposure (33 mJ/cm~2/pulse, 215 pulses), and plane structures in the sites with higher fluence exposure (89 mJ/cm~2/pulse, 80 pulses). In contrast, the ablation of the Er:YAG laser created some pores of about 20 μm across on the SC surface. Under the irradiation condition of the partial ablation, the skin permeability of macromolecule was enhanced. This partial SC ablation by the pulsed laser could be possible candidate of the noninvasive transdermal drug delivery system with good physiological conditions of skin.
机译:为了开发非侵袭性透皮药物递送系统,使用脉冲激光器(氩氟代准分子激光器(ARF激光器)和铒:Yi​​ttrium铝石榴石激光(ER:YAG激光))部分烧蚀角质层(SC)。由于SC对药物渗透的阻隔功能,特别是没有皮肤刺激的透皮药物输送系统中使用的特定大分子的药物数量受到限制。用环境扫描电子显微镜观察到体外激光烧蚀尤卡坦微显皮肤SC表面的超微结构变化。该结果表明,结构变化根据每个激光源和照射条件(激光流量流量和脉冲数)而变化。在ARF激光器上的烧蚀点观察到许多粒状结构,较低的流量暴露(33mJ / cm〜2 /脉冲,215脉冲),以及流量较高曝光的部位(89mJ / cm) 〜2 /脉冲,80个脉冲)。相反,ER的消融:YAG激光在SC表面上产生了一些约20μm的孔。在部分消融的照射条件下,提高了大分子的皮肤渗透性。通过脉冲激光的这种部分SC消融可以是具有良好的皮肤生理条件的非侵袭性透皮药物递送系统的候选者。

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