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Heat: A Highly Efficient Skin Enhancer for Transdermal Drug Delivery

机译:热量:用于透皮给药的高效皮肤增强剂

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摘要

Advances in materials science and bionanotechnology have allowed the refinements of current drug delivery systems, expected to facilitate the development of personalized medicine. While dermatological topical pharmaceutical formulations such as foams, creams, lotions, gels, etc., have been proposed for decades, these systems target mainly skin-based diseases. To treat systemic medical conditions as well as localized problems such as joint or muscle concerns, transdermal delivery systems (TDDSs), which use the skin as the main route of drug delivery, are very appealing. Over the years, these systems have shown to offer important advantages over oral as well as intravenous drug delivery routes. Besides being non-invasive and painless, TDDSs are able to deliver drugs with a short-half-life time more easily and are well adapted to eliminate frequent administrations to maintain constant drug delivery. The possibility of self-administration of a predetermined drug dose at defined time intervals makes it also the most convenient personalized point-of-care approach. The transdermal market still remains limited to a narrow range of drugs. While small and lipophilic drugs have been successfully delivered using TDDSs, this approach fails to deliver therapeutic macromolecules due to size-limited transport across the stratum corneum, the outermost layer of the epidermis. The low permeability of the stratum corneum to water-soluble drugs as well as macromolecules poses important challenges to transdermal administration. To widen the scope of drugs for transdermal delivery, new procedures to enhance skin permeation to hydrophilic drugs and macromolecules are under development. Next to iontophoresis and microneedle-based concepts, thermal-based approaches have shown great promise to enhance transdermal drug delivery of different therapeutics. In this inaugural article for the section “Frontiers in Bioengineering and Biotechnology,” the advances in this field and the handful of examples of thermal technologies for local and systemic transdermal drug delivery will be discussed and put into perspective.
机译:材料科学和生物纳米技术的进步使得当前的药物输送系统得以完善,有望促进个性化药物的发展。尽管数十年来已经提出了皮肤病学局部药物制剂,例如泡沫,乳膏,洗剂,凝胶等,但是这些系统主要针对皮肤疾病。为了治疗全身性医学疾病以及局部问题,例如关节或肌肉疾病,使用皮肤作为药物主要输送途径的透皮给药系统(TDDS)非常吸引人。多年来,这些系统已显示出相对于口服和静脉内药物输送途径的重要优势。 TDDS除了具有无创性和无痛性外,还能够更轻松地在短生命周期内递送药物,并且很好地适应了消除频繁给药以维持药物稳定递送的需求。在定义的时间间隔自动给药预定药物的可能性使其成为最方便的个性化即时护理方法。透皮市场仍然局限于有限范围的药物。尽管已经使用TDDS成功地递送了小型和亲脂性药物,但是由于跨角质层(表皮的最外层)的大小受到限制,这种方法无法递送治疗性大分子。角质层对水溶性药物以及大分子的低渗透性对经皮给药提出了重要的挑战。为了扩大用于透皮递送的药物的范围,正在开发新的程序以增强皮肤对亲水性药物和大分子的渗透。除了离子电渗疗法和基于微针的概念外,基于热的方法还显示出增强不同疗法的透皮药物递送的巨大希望。在此“生物工程和生物技术的前沿”部分的开篇文章中,将讨论该领域的进展以及用于局部和全身性透皮给药的热技术实例,并加以介绍。

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