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一种无因子水凝胶,具有 ROS 清除和响应性降解功能,可增强糖尿病骨愈合。

A Factor-Free Hydrogel with ROS Scavenging and Responsive Degradation for Enhanced Diabetic Bone Healing.

机构信息

Institute of Translational Medicine, Shanghai University, Shanghai, 200444, China.

Organoid Research Center, Shanghai University, Shanghai, 200444, China.

出版信息

Small. 2024 Jun;20(24):e2306389. doi: 10.1002/smll.202306389. Epub 2024 Jan 2.

Abstract

In view of the increased levels of reactive oxygen species (ROS) that disturb the osteogenic differentiation of bone marrow mesenchymal stem cells (BMSCs), the repair of diabetic bone defects remains a great challenge. Herein, a factor-free hydrogel is reported with ROS scavenging and responsive degradation properties for enhanced diabetic bone healing. These hydrogels contain ROS-cleavable thioketal (TK) linkers and ultraviolet (UV)-responsive norbornene (NB) groups conjugated with 8-arm PEG macromers, which are formed via UV crosslinking-mediated gelation. Upon reacting with high levels of ROS in the bone defect microenvironment, ROS-cleavable TK linkers are destroyed, allowing the responsive degradation of hydrogels, which promotes the migration of BMSCs. Moreover, ROS levels are reduced through hydrogel-mediated ROS scavenging to reverse BMSC differentiation from adipogenic to osteogenic phenotype. As such, a favorable microenvironment is created after simultaneous ROS scavenging and hydrogel degradation, leading to the effective repair of bone defects in diabetic mouse models, even without the addition of growth factors. Thus, this study presents a responsive hydrogel platform that regulates ROS scavenging and stromal degradation in bone engineering.

摘要

鉴于活性氧 (ROS) 水平升高会干扰骨髓间充质干细胞 (BMSC) 的成骨分化,糖尿病性骨缺损的修复仍然是一个巨大的挑战。本文报道了一种无因子水凝胶,具有清除 ROS 和响应性降解特性,可增强糖尿病性骨愈合。这些水凝胶含有可被 ROS 切断的硫缩酮 (TK) 键和与 8 臂聚乙二醇大分子偶联的紫外线 (UV) 响应性降冰片烯 (NB) 基团,通过 UV 交联介导的胶凝形成。在与骨缺损微环境中高水平的 ROS 反应后,ROS 可切断的 TK 键被破坏,水凝胶的响应性降解得以促进 BMSC 的迁移。此外,通过水凝胶介导的 ROS 清除来降低 ROS 水平,可逆转 BMSC 从脂肪形成向成骨表型的分化。因此,在同时清除 ROS 和水凝胶降解后,创造了一个有利的微环境,从而有效地修复了糖尿病小鼠模型中的骨缺损,甚至无需添加生长因子。因此,本研究提出了一种响应性水凝胶平台,可调节骨工程中的 ROS 清除和基质降解。

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