A natural hydrogel complex improves intervertebral disc degeneration by correcting fatty acid metabolism and inhibiting nucleus pulposus cell pyroptosis

细胞外基质 椎间盘 细胞生物学 变性(医学) 化学 上睑下垂 再生(生物学) 核心 细胞凋亡 程序性细胞死亡 生物化学 生物 病理 医学 解剖
作者
Dong Wang,Liangping Zhang,Du He,Yujun Zhang,Lan Zhao,Zhimin Miao,Wei Cheng,Chengyue Zhu,Yinyan Shao,Guofen Ge,Hang Zhu,Hongting Jin,Wei Zhang,Hao Pan
出处
期刊:Materials today bio [Elsevier BV]
卷期号:26: 101081-101081 被引量:8
标识
DOI:10.1016/j.mtbio.2024.101081
摘要

The degeneration of intervertebral discs is strongly associated with the occurrence of pyroptosis in nucleus pulposus (NP) cells. This pyroptosis is characterized by abnormal metabolism of fatty acids in the degenerative pathological state, which is further exacerbated by the inflammatory microenvironment and degradation of the extracellular matrix. In order to address this issue, we have developed a fibrin hydrogel complex (FG@PEV). This intricate formulation amalgamates the beneficial attributes of platelet extravasation vesicles, contributing to tissue repair and regeneration. Furthermore, this complex showcases exceptional stability, gradual-release capabilities, and a high degree of biocompatibility. In order to substantiate the biological significance of FG@PEV in intervertebral disc degeneration (IVDD), we conducted a comprehensive investigation into its potential mechanism of action through the integration of RNA-seq sequencing and metabolomics analysis. Furthermore, these findings were subsequently validated through experimentation in both in vivo and in vitro models. The experimental results revealed that the FG@PEV intervention possesses the capability to reshape the inflammatory microenvironment within the disc. It also addresses the irregularities in fatty acid metabolism of nucleus pulposus cells, consequently hindering cellular pyroptosis and slowing down disc degeneration through the regulation of extracellular matrix synthesis and degradation. As a result, this injectable gel system represents a promising and innovative therapeutic approach for mitigating disc degeneration.
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