Suppr超能文献

用于增强治疗剂递送的微穿孔技术。

Microporation techniques for enhanced delivery of therapeutic agents.

作者信息

Singh Thakur R R, Garland Martin J, Cassidy Corona M, Migalska Katarzyna, Demir Yusuf K, Abdelghany Sharif, Ryan Elizabeth, Woolfson A David, Donnelly Ryan F

机构信息

School of Pharmacy, Queen's University Belfast, Medical Biology Centre, 97 Lisburn Road, Belfast BT9 7BL, UK.

出版信息

Recent Pat Drug Deliv Formul. 2010 Jan;4(1):1-17. doi: 10.2174/187221110789957174.

Abstract

Perhaps the greatest barrier to development of the field of transmembrane drug delivery is that only a limited number of drugs are amenable to administration by this route. The highly lipophilic nature and barrier function of the uppermost layer of the skin, the stratum corneum, for example, restricts the permeation of hydrophilic, high molecular weight and charged compounds into the systemic circulation. Other membranes in the human body can also present significant barriers to drug permeation. In order to successfully deliver hydrophilic drugs, and macromolecular agents of interest, including peptides, DNA and small interfering RNA, many research groups and pharmaceutical companies Worldwide are focusing on the use of microporation methods and devices. Whilst there are a variety of microporation techniques, including the use of laser, thermal ablation, electroporation, radiofrequency, ultrasound, high pressure jets, and microneedle technology, they share the common goal of enhancing the permeability of a biological membrane through the creation of transient aqueous transport pathways of micron dimensions across that membrane. Once created, these micropores are orders of magnitude larger than molecular dimensions and, therefore, should readily permit the transport of hydrophilic macromolecules. Additionally, microporation devices also enable minimally-invasive sampling and monitoring of biological fluids. This review deals with the innovations relating to microporation-based methods and devices for drug delivery and minimally invasive monitoring, as disclosed in recent patent literature.

摘要

跨膜给药领域发展的最大障碍或许在于,仅有有限数量的药物适合通过该途径给药。例如,皮肤最外层角质层具有高度亲脂性及屏障功能,这限制了亲水性、高分子量及带电荷化合物渗透进入体循环。人体中的其他膜也可能对药物渗透构成重大障碍。为了成功递送亲水性药物以及包括肽、DNA和小干扰RNA在内的感兴趣的大分子药物,全球许多研究团队和制药公司都在专注于使用微孔技术和设备。虽然存在多种微孔技术,包括激光、热消融、电穿孔、射频、超声、高压喷射和微针技术,但它们的共同目标是通过在生物膜上创建微米级的瞬时水转运通道来提高生物膜的通透性。一旦形成,这些微孔比分子尺寸大几个数量级,因此应该很容易允许亲水性大分子的转运。此外,微孔设备还能够对生物流体进行微创采样和监测。本综述涉及近期专利文献中披露的与基于微孔的药物递送和微创监测方法及设备相关的创新。

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