基于水凝胶的微针作为一种药物递送系统。

Hydrogel-Based Microneedle as a Drug Delivery System.

作者信息

Filho David, Guerrero Marcelo, Pariguana Manuel, Marican Adolfo, Durán-Lara Esteban F

机构信息

Laboratory of Bio & Nano Materials, Drug Delivery and Controlled Release, Department of Microbiology, Faculty of Health Sciences, University of Talca, Talca 3460000, Chile.

Center for Nanomedicine, Diagnostic & Drug Development (ND3), University of Talca, Talca 3460000, Chile.

出版信息

Pharmaceutics. 2023 Oct 10;15(10):2444. doi: 10.3390/pharmaceutics15102444.

Abstract

The skin is considered the largest and most accessible organ in the human body, and allows the use of noninvasive and efficient strategies for drug administration, such as the transdermal drug delivery system (TDDS). TDDSs are systems or patches, with the ability and purpose to deliver effective and therapeutic doses of drugs through the skin. Regarding the specific interaction between hydrogels (HG) and microneedles (MNs), we seek to find out how this combination would be applied in the context of drug delivery, and we detail some possible advantages of the methods used. Depending on the components belonging to the HG matrix, we can obtain some essential characteristics that make the combination of hydrogels-microneedles (HG-MNs) very advantageous, such as the response to external stimuli, among others. Based on multiple characteristics provided by HGMNs that are depicted in this work, it is possible to obtain unique properties that include controlled, sustained, and localized drug release, as well as the possibility of a synergistic association between the components of the formulation and the combination of more than one bioactive component. In conclusion, a system based on HG-MNs can offer many advantages in the biomedical field, bringing to light a new technological and safe system for improving the pharmacokinetics and pharmacodynamics of drugs and new treatment perspectives.

摘要

皮肤被认为是人体最大且最易触及的器官,这使得非侵入性且高效的给药策略得以应用,比如透皮给药系统(TDDS)。TDDS是一种系统或贴片,有能力且旨在通过皮肤递送有效治疗剂量的药物。关于水凝胶(HG)与微针(MN)之间的特定相互作用,我们试图弄清楚这种组合在药物递送背景下将如何应用,并详细阐述所用方法的一些可能优势。根据属于HG基质的成分,我们可以获得一些使水凝胶 - 微针(HG - MN)组合非常有利的基本特性,比如对外部刺激的响应等。基于本文所描述的HG - MN提供的多种特性,有可能获得独特的性能,包括可控、持续和局部药物释放,以及制剂成分之间协同结合的可能性和不止一种生物活性成分的组合。总之,基于HG - MN的系统在生物医学领域可提供诸多优势,为改善药物的药代动力学和药效学以及新的治疗前景带来一种新的技术且安全的系统。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4785/10609870/2e9b57f022d3/pharmaceutics-15-02444-g001.jpg

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