Issue 10, 2024

Nanomicrosphere sustained-release urokinase systems with antioxidant properties for deep vein thrombosis therapy

Abstract

Deep vein thrombosis (DVT) is a venous return disorder caused by abnormal clotting of blood in deep veins. After thrombosis, most of the thrombus will spread to the deep vein trunk throughout the limb. If DVT is not treated in time, most of them will develop into thrombosis sequelae and even threaten life. Intravenous thrombolytic drugs are the most promising strategy for treating DVT, but current drugs used for thrombolysis suffer from short half-lives and narrow therapeutic indexes. To effectively manage DVT, it is necessary to develop a novel multifunctional drug-loading system to effectively prolong the treatment time and improve the therapeutic efficacy. In this study, a urokinase-loaded protocatechuic aldehyde-modified chitosan microsphere drug-loading platform was constructed for the treatment of DVT. This microsphere adsorbed urokinase well through electrostatic interaction, and the introduction of bovine serum albumin conferred stability to the microspheres. Therefore, the microsphere drug delivery system could achieve slow drug release to effectively dissolve blood fibrin. In addition, chitosan grafted with protocatechuic aldehyde imparted excellent antioxidant activity to the system to reduce free radicals in the blood vessels. Effective management of oxidative stress could avoid abnormal platelet activation and new thrombus formation. The experimental results showed that this microsphere had good biocompatibility, anti-inflammatory properties, and considerable thrombolytic activity. In conclusion, this study provided a new direction and developed a novel multi-functional nano microsphere drug delivery platform for the treatment of DVT.

Graphical abstract: Nanomicrosphere sustained-release urokinase systems with antioxidant properties for deep vein thrombosis therapy

Supplementary files

Article information

Article type
Paper
Submitted
23 Oct 2023
Accepted
11 Feb 2024
First published
28 Feb 2024
This article is Open Access
Creative Commons BY-NC license

RSC Adv., 2024,14, 7195-7205

Nanomicrosphere sustained-release urokinase systems with antioxidant properties for deep vein thrombosis therapy

S. Xiao, X. Sun, C. Wang, J. Wu, K. Zhang, M. Guo and B. Liu, RSC Adv., 2024, 14, 7195 DOI: 10.1039/D3RA07221E

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