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◆ Journal of materials chemistry. B2026-09-09

Injectable self-assembled microgels incorporating MnO2-decorated Mg-doped bioactive glass nanozymes for in vitro protection of nucleus pulposus cells.

Xianshuai Qiu, Jinlian Liu, Kunping Huo, Lei Zhang, Fuxing Li, Sujun Qiu, Zetao Wang, Shaoxiong Min

原始摘要(英文原文)· Original abstract
Intervertebral disc degeneration (IDD) is a prevalent pathological condition characterized by an oxidative stress microenvironment that drives nucleus pulposus (NP) cell dysfunction and extracellular matrix (ECM) catabolism. While nanozyme-based antioxidant strategies have shown promise, their clinical translation remains hindered by poor local retention and insufficiently sustained catalytic activity within the degenerative disc. Here, we developed an injectable, self-healing microgel (MPMB/GO) for the co-delivery of MnO2 nanozymes and magnesium ions (Mg2+) to modulate oxidative and inflammatory stress-associated responses. In vitro studies demonstrated that MPMB/GO effectively scavenged reactive oxygen species (ROS), preserved mitochondrial membrane potential, and attenuated oxidative stress-induced NP cell apoptosis. In summary, MPMB/GO provides a nanozyme-engineered injectable microgel strategy for localized redox modulation and NP-cell protection, offering a potential material platform for future IDD intervention studies.
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Injectable self-assembled microgels incorporating MnO2-decorated Mg-doped bioactive glass nanozymes for in vitro protection of nucleus pulposus cells. — 科研速览 Science Skim