化学
细胞外基质
氧化应激
自愈水凝胶
活性氧
生物相容性
变性(医学)
氧化磷酸化
生物物理学
炎症
细胞生物学
纤维化
细胞外
再生(生物学)
肿瘤微环境
右旋糖酐
椎间盘
串扰
过氧化氢
生物化学
组织工程
信号转导
细胞毒性
壳聚糖
基质(化学分析)
纳米技术
活性氮物种
一氧化氮
作者
Jia-Jie Lu,Yituo Chen,Qichen Zhang,Xian Wang,Guang-Cheng Yuan,Yu-Kai Huang,Tao Wu,Jian Dong,Libo Jiang,Xilei Li
标识
DOI:10.1016/j.mtbio.2025.102630
摘要
Intervertebral disc degeneration (IVDD) stands as a predominant cause of low back pain (LBP). The excessive accumulation of reactive oxygen species (ROS) represents a crucial pathophysiological mechanism involved in IVDD, which triggers oxidative stress in the microenvironment, resulting in apoptosis, inflammation, and metabolic imbalance of extracellular matrix (ECM). Here, we ingeniously devised an injectable hydrogel (CMC-PBA/ODEX/HMP@Lut) consisting of phenylboronic acid-modified carboxymethyl chitosan (CMC-PBA), oxidized dextran (ODEX), MnO2 nanoparticles loaded with luteolin (HMP@Lut). The introduction of HMP@Lut as a nanofiller into hydrogels enabled the additional cross-linking of polymer networks through hydrogen bonding. The phenylborate ester bonds, hydrogen bonds, and Schiff base bonds conferred the ROS/pH dual-responsiveness to the hydrogel. It was designed to adapt to the acidic environment and effectively scavenged ROS, ameliorated apoptosis, inflammation and modulated ECM metabolic imbalances. In vitro, the hydrogel could inhibit oxidative stress of nucleus pulposus cells by modulating the PI3K/AKT/NF-κB signaling pathway, exerting anti-inflammatory and anti-apoptotic effects and reducing ECM degradation. In animal experiments, the hydrogel improved the microenvironment and promoted disc regeneration through its injectability, excellent biocompatibility and degradability. In brief, this multifunctional hydrogel endowed with dual response properties presents a new strategy for the IVDD treatment, which is promising for future clinical applications.
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