化学
活性氧
软骨
活性氮物种
巨噬细胞极化
一氧化氮
细胞生物学
氧化应激
光热治疗
骨关节炎
炎症
抗氧化剂
再生(生物学)
级联
NADPH氧化酶
纳米技术
纳米毒理学
巨噬细胞
免疫系统
氧化磷酸化
生物物理学
内生
信号转导
调解人
作者
Yan Ma,Yufei Liu,Pan Chen,Yingfeng Su,Zizheng Chen,Xiangqian Fang,Yujun Zhang,Junxin Chen,Wenbin Xu
出处
期刊:Nano Research
[Springer Science+Business Media]
日期:2025-12-03
卷期号:19 (1): 94908293-94908293
被引量:1
标识
DOI:10.26599/nr.2025.94908293
摘要
Osteoarthritis (OA), a debilitating joint disorder affecting millions worldwide, is characterized by persistent inflammation, oxidative stress, and irreversible cartilage breakdown, yet remains without disease-modifying therapies. Inspired by natural enzymatic cascades, we developed a bioinspired nanocomposite hydrogel, N,S-doped Mn-Nb(C-CeO), that mimics endogenous antioxidant pathways to reprogram the OA microenvironment. This system combines N,S-doped Mn-Nb2C MXene nanosheets with CeO2 nanozymes within a boronate ester-crosslinked hydrogel, forming an “immuno-redox circuitry” with four synergistic functions: 1) Cascade reactive oxygen species(ROS) scavenging via superoxide dismutase-like Mn-Nb2C and catalase-like CeO2, amplified by photothermal enhancement under near-infrared irradiation; 2) Broad reactive nitrogen species clearance, removing peroxynitrite(ONOO-), nitric oxide(NO), and nitroxyl(NO-) to mitigate inflammation; 3) Immunomodulation through Mn2+-activated cGAS-STING signaling, which promoted macrophage polarization toward the M2 phenotype, concomitantly reducing the levels of pro-inflammatory cytokines such as IL-1β and TNF-α; 4) Cartilage regeneration via pH/ROS-responsive simvastatin(SIM) release and nanocatalysis, upregulating SOX9 and Col2a1 while inhibiting MMP-13 and ADAMTS5. In a murine OA model, the system reduced synovitis by 60%, restored 80% of cartilage thickness, and suppressed osteophyte formation, outperforming single-component treatments. This strategy pioneers a “self-healing cartilage” approach by integrating nanocatalysis with immunoengineering for transformative OA therapy.
科研通智能强力驱动
Strongly Powered by AbleSci AI