他扎罗汀
脊髓损伤
再生(生物学)
黑磷
药品
药理学
材料科学
细胞生物学
医学
脊髓
生物
光电子学
皮肤病科
精神科
银屑病
作者
Kun Liu,Y.G. Wang,Xianzhen Dong,Chao Xu,Meng Yuan,Wenying Wei,Zixuan Pang,Xiaopei Wu,Honglian Dai
出处
期刊:Small
[Wiley]
日期:2024-01-26
卷期号:20 (26)
被引量:13
标识
DOI:10.1002/smll.202310194
摘要
Abstract Spinal cord injury (SCI) often leads to cell death, vascular disruption, axonal signal interruption, and permanent functional damage. Currently, there are no clearly effective therapeutic options available for SCI. Considering the inhospitable SCI milieu typified by ischemia, hypoxia, and restricted neural regeneration, a novel injectable hydrogel system containing conductive black phosphorus (BP) nanosheets within a lipoic acid‐modified chitosan hydrogel matrix (LAMC) is explored. The incorporation of tannic acid (TA)‐modified BP nanosheets (BP@TA) into the LAMC hydrogel matrix significantly improved its conductivity. Further, by embedding a bicyclodextrin‐conjugated tazarotene drug, the hydrogel showcased amplified angiogenic potential in vitro. In a rat model of complete SCI, implantation of LAMC/BP@TA hydrogel markedly improved the recovery of motor function. Immunofluorescence evaluations confirmed that the composite hydrogel facilitated endogenous angiogenesis and neurogenesis at the injury site. Collectively, this work elucidates an innovative drug‐incorporated hydrogel system enriched with BP, underscoring its potential to foster vascular and neural regeneration.
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