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Mechanistic view of skin electroporation - models and dosimetry for successful applications: an expert review

机译:皮肤电穿孔机械图 - 成功应用的模型和剂量计:专家评论

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Introduction: Skin electroporation is a promising treatment for transdermal drug delivery, gene electrotransfer, skin rejuvenation, electrochemotherapy, and wound disinfection. Although a considerable amount of in vitro and in vivo studies exists, the translation to clinics is not as fast as one would hope. We hypothesize the reason lies in the inadequate dosimetry, i.e. electrode configurations, pulse parameters, and pulse generators used. We suggest adequate dosimetry can be determined by mathematical modeling which would allow comparison of protocols and facilitate translation into clinics. Areas covered: We introduce the mechanisms and applications of skin electroporation, present existing mathematical models and compare the influence of different model parameters. We review electrodes and pulse generators, prototypes, as well as commercially available models. Expert opinion: The reasons for slow translation of skin electroporation treatments into clinics lie in uncontrolled and inadequate dosimetry, poor reporting rendering comparisons between studies difficult, and significant differences in animal and human skin morphology often dismissed in reports. Mathematical models enable comparison of studies, however, when the parameters of the pulses and electrode configuration are not adequately reported, as is often the case, comparisons are difficult, if not impossible. For each skin electroporation treatment, systematic studies determining optimal parameters should be performed and treatment parameters standardized.
机译:简介:皮肤电穿孔是对透皮药物递送,基因电转换,皮肤复兴,电化学疗法和伤口消毒的有前途的处理。虽然存在相当大量的体外和体内研究,但到诊所的翻译并不像一个人希望的那么快。我们假设原因在于,剂量率不足,即电极配置,脉冲参数和使用脉冲发生器。我们建议通过数学建模确定足够的剂量测定,这将允许比较协议并促进翻译成诊所。所涵盖的区域:我们介绍了皮肤电穿孔的机制和应用,现有的现有数学模型,并比较不同模型参数的影响。我们审查电极和脉冲发生器,原型和商业上可用的型号。专家意见:皮肤电穿孔治疗缓慢转化为诊所的原因在于不受控制和不充分的剂量性,较差的报告在研究之间进行比较,动物和人类皮肤形态的显着差异通常被驳回。数学模型实现研究的比较,然而,当脉冲和电极配置的参数没有充分报道时,通常情况下,如果不是不可能的话,比较困难。对于每种皮肤电穿孔处理,应对确定最佳参数的系统研究和标准化的处理参数。

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