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纳米结构介导的治疗药物经上皮屏障转运。

Nanostructure-Mediated Transport of Therapeutics through Epithelial Barriers.

机构信息

University of California Berkeley-University of California San Francisco Graduate Program in Bioengineering, San Francisco, CA 94143, USA.

Department of Bioengineering and Therapeutic Sciences, University of California San Francisco, San Francisco, CA 94143, USA.

出版信息

Int J Mol Sci. 2024 Jun 28;25(13):7098. doi: 10.3390/ijms25137098.

Abstract

The ability to precisely treat human disease is facilitated by the sophisticated design of pharmacologic agents. Nanotechnology has emerged as a valuable approach to creating vehicles that can specifically target organ systems, effectively traverse epithelial barriers, and protect agents from premature degradation. In this review, we discuss the molecular basis for epithelial barrier function, focusing on tight junctions, and describe different pathways that drugs can use to cross barrier-forming tissue, including the paracellular route and transcytosis. Unique features of drug delivery applied to different organ systems are addressed: transdermal, ocular, pulmonary, and oral delivery. We also discuss how design elements of different nanoscale systems, such as composition and nanostructured architecture, can be used to specifically enhance transepithelial delivery. The ability to tailor nanoscale drug delivery vehicles to leverage epithelial barrier biology is an emerging theme in the pursuit of facilitating the efficacious delivery of pharmacologic agents.

摘要

药物的精密设计使我们能够精确地治疗人类疾病。纳米技术已经成为一种有价值的方法,可以创建能够专门针对器官系统的载体,有效地穿越上皮屏障,并保护药物免受过早降解。在这篇综述中,我们讨论了上皮屏障功能的分子基础,重点是紧密连接,并描述了药物可以用来穿越形成屏障的组织的不同途径,包括旁细胞途径和转胞吞作用。针对不同器官系统的药物传递的独特特征也得到了探讨:经皮、眼部、肺部和口服传递。我们还讨论了不同纳米系统的设计元素,如组成和纳米结构架构,如何被用来专门增强跨上皮传递。能够根据上皮屏障生物学来定制纳米药物传递载体是追求促进药物有效传递的一个新兴主题。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93d0/11241453/1b407391d12f/ijms-25-07098-g002.jpg

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