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用于糖尿病治疗和抗菌应用的潜在药物递送系统——Janus颗粒的研发

Development of Janus Particles as Potential Drug Delivery Systems for Diabetes Treatment and Antimicrobial Applications.

作者信息

Tan Kei Xian, Danquah Michael K, Jeevanandam Jaison, Barhoum Ahmed

机构信息

GenScript Biotech Pte. Ltd., 164, Kallang Way, Solaris@Kallang 164, Singapore 349248, Singapore.

Department of Chemical Engineering, University of Tennessee, Chattanooga, TN 37403, USA.

出版信息

Pharmaceutics. 2023 Jan 27;15(2):423. doi: 10.3390/pharmaceutics15020423.

Abstract

Janus particles have emerged as a novel and smart material that could improve pharmaceutical formulation, drug delivery, and theranostics. Janus particles have two distinct compartments that differ in functionality, physicochemical properties, and morphological characteristics, among other conventional particles. Recently, Janus particles have attracted considerable attention as effective particulate drug delivery systems as they can accommodate two opposing pharmaceutical agents that can be engineered at the molecular level to achieve better target affinity, lower drug dosage to achieve a therapeutic effect, and controlled drug release with improved pharmacokinetics and pharmacodynamics. This article discusses the development of Janus particles for tailored and improved delivery of pharmaceutical agents for diabetes treatment and antimicrobial applications. It provides an account of advances in the synthesis of Janus particles from various materials using different approaches. It appraises Janus particles as a promising particulate system with the potential to improve conventional delivery systems, providing a better loading capacity and targeting specificity whilst promoting multi-drugs loading and single-dose-drug administration.

摘要

Janus颗粒已成为一种新型智能材料,可改善药物制剂、药物递送和治疗诊断。与其他传统颗粒不同,Janus颗粒有两个功能、物理化学性质和形态特征不同的独特隔室。最近,Janus颗粒作为有效的颗粒药物递送系统引起了相当大的关注,因为它们可以容纳两种相反的药剂,这些药剂可以在分子水平上进行设计,以实现更好的靶标亲和力、更低的药物剂量以达到治疗效果,以及通过改善药代动力学和药效学实现药物的控释。本文讨论了用于定制和改进药物递送以治疗糖尿病和用于抗菌应用的Janus颗粒的发展。它介绍了使用不同方法从各种材料合成Janus颗粒的进展。它将Janus颗粒评估为一种有前途的颗粒系统,具有改善传统递送系统的潜力,能提供更好的负载能力和靶向特异性,同时促进多药负载和单剂量药物给药。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f013/9967574/f6a6a1c0cc72/pharmaceutics-15-00423-g001.jpg

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