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Radio Frequency-Microchannels for Transdermal Delivery: Characterization of Skin Recovery and Delivery Window

机译:透皮递送的射频微通道:皮肤恢复和递送窗口的表征

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Transdermal delivery through Radio-Frequency-MicroChannels (RF-MCs) was proven to be a promising delivery method for hydrophilic drugs and macromolecules that must be injected. An important issue in assessing this technology is the life span of the microchannels (MCs). The time window in which the MCs remain open affects the delivery rate and determine the effective delivery duration. The present work focused on the characterization of the ViaDor-MCs recovery and closure process by measurements of transepidermal water loss (TEWL) before and after the formation of MCs, evaluation of the delivery window, and assessment of skin histology. Testosterone-cyclodextrin complex was used as the model drug for evaluation of the transdermal delivery. In-vitro permeation system and in-vivo guinea pig animal model were used in the delivery studies. Our findings demonstrate the recovery process of MCs created by the RF ablation technology. The observed gradual skin recovery affected the transdermal delivery rate. A significant transdermal delivery was shown up to 24 hrs post device application suggesting that an extended delivery of water soluble drugs, including macromolecules, is possible. The histology assessments demonstrated repair and healing of the induced MCs indicating that the RF micro-channeling technology is minimally invasive, transient in nature with no resulting skin trauma.
机译:事实证明,通过射频微通道(RF-MC)进行透皮递送是一种对必须注射的亲水性药物和大分子有希望的递送方法。评估这项技术的一个重要问题是微通道(MC)的寿命。 MC保持打开状态的时间窗口会影响传递速率并确定有效传递持续时间。本工作的重点是通过测量MC形成前后的经表皮失水量(TEWL),传递窗口的评估以及皮肤组织学评估,来表征ViaDor-MC的恢复和闭合过程。睾丸激素-环糊精复合物用作模型药物,用于评估透皮递送。体外渗透系统和豚鼠体内动物模型用于分娩研究。我们的发现证明了射频消融技术产生的MC的恢复过程。观察到的皮肤逐渐恢复影响透皮递送速率。在设备使用后24小时内显示出明显的透皮递送,这表明可能延长水溶性药物(包括大分子)的递送。组织学评估表明诱导的MC的修复和愈合表明RF微通道技术是微创的,本质上是瞬时的,不会导致皮肤创伤。

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