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Transdermal Drug Delivery Aided by an Ultrasound Contrast Agent: An In Vitro Experimental Study

机译:超声造影剂辅助的透皮给药:一项体外实验研究

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Sonophoresis temporarily increases skin permeability such that medicine can be delivered transdermally. Cavitation is believed to be the predominant mechanism in sonophoresis. In this study, an ultrasound contrast agent (UCA) strategy was adopted instead of low frequency ultrasound to assure that cavitation occurred, and the efficacy of sonophoresis with UCA was quantitatively analyzed by optical measurements. The target drug used in this study was 0.1 % Definity? in 70% glycerol, which was delivered into porcine skin samples. Glycerol was used because it is an optical clearing agent, and the efficiency of glycerol delivery could be analyzed with optical measurements. The applied acoustic pressure was approximately 600 kPa at 1 MHz ultrasound with a 10% duty cycle for 60 minutes. Experimental results indicated that the measured relative contrast (RC) after sonophoresis with UCA was approximately 80% higher than RC after sonophoresis without UCA. In addition, the variance of RC was also reduced by more than 50% with the addition of a UCA. The use of a UCA appeared to increase cavitation, demonstrating that the use of a UCA can be effective in transdermal drug delivery (TDD).
机译:超声渗透可以暂时增加皮肤的渗透性,从而可以透皮给药。空化被认为是超声治疗的主要机制。在这项研究中,采用超声造影剂(UCA)策略代替低频超声,以确保发生气蚀,并通过光学测量定量分析了UCA的超声治疗的功效。本研究中使用的目标药物为0.1%Definity?在70%的甘油中,将其送入猪的皮肤样品中。使用甘油是因为它是一种光学清除剂,可以通过光学测量来分析甘油的输送效率。在1 MHz的超声下,施加的声压约为600 kPa,占空比为10%,持续60分钟。实验结果表明,在使用UCA进行超声渗入后,测得的相对对比度(RC)大约比不使用UCA进行超声渗入后的RC约高80%。此外,通过添加UCA,RC的方差也减少了50%以上。使用UCA似乎会增加空化作用,这表明使用UCA可以有效地透皮给药(TDD)。

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