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首页> 外文期刊>International Journal of Pharmaceutics >Low frequency sonophoresis mediated transdermal and intradermal delivery of ketoprofen
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Low frequency sonophoresis mediated transdermal and intradermal delivery of ketoprofen

机译:低频超声介导酮洛芬的透皮和皮内递送

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The objective of this study was to test low frequency sonophoresis at 20 kHz for delivery of ketoprofen into and across the skin. Permeation studies were carried out in vitro on excised hairless rat skin over a period of 24 h using Franz diffusion cells after which, skin samples were subjected to skin extraction to quantify the amount of drug present in skin. Parameters like ultrasound application time, duty cycle coupling medium and distance of ultrasound horn from skin were optimized. Transepidermal water loss (TEWL) was measured to indicate the extent of barrier disruption following sonophoresis. Confocal microscopy was used to visualize dye penetration through sonophoresis treated skin. Application of ultrasound significantly enhanced permeation of ketoprofen from 74.87 ± 5.27 μg/cm 2 for passive delivery to 491.37 ± 48.78 μg/cm 2 for sonophoresis. Drug levels in skin layers increased from 34.69 ± 7.25 μg following passive permeation to 212.62 ± 45.69 μg following sonophoresis. TEWL increased from 31.6 ± 0.02 (passive) to 69.5 ± 12.60 (sonophoresis) indicating disruption of barrier properties. Confocal microscopy images depicted enhanced dye penetration through sonophoresis treated skin confirming barrier disruption. Low frequency sonophoresis with optimized ultrasound parameters can be effectively used to actively enhance transdermal and topical delivery of ketoprofen.
机译:这项研究的目的是测试20 kHz的低频超声消融法,以测定酮洛芬在皮肤中和在皮肤中的传递。使用Franz扩散池在24h的时间内对离体的无毛大鼠皮肤进行体外渗透研究,然后对皮肤样品进行皮肤提取以定量皮肤中存在的药物量。优化了诸如超声施加时间,占空比耦合介质和超声角距皮肤的距离等参数。经表皮水分流失(TEWL)被测量以指示在超声治疗后屏障破坏的程度。共聚焦显微镜用于可视化染料通过超声处理皮肤的渗透。超声的应用显着增强了酮洛芬的渗透性,从被动递送的74.87±5.27μg/ cm 2到超声穿刺的491.37±48.78μg/ cm 2。皮肤层中的药物水平从被动渗透后的34.69±7.25μg增加到超声渗入后的222.62±45.69μg。 TEWL从31.6±0.02(被动)提高到69.5±12.60(声渗),表明阻隔性能受到破坏。共聚焦显微镜图像描绘了通过超声处理的皮肤增强的染料渗透,从而证实了屏障的破坏。具有优化超声参数的低频超声治疗可以有效地用于积极增强酮洛芬的透皮和局部递送。

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