椎间盘
血管生成
细胞生物学
化学
机械转化
河马信号通路
核心
转录因子
串扰
第1章
新生血管
变性(医学)
基质金属蛋白酶
生物物理学
信号转导
细胞
基因敲除
组织重塑
机械生物学
解剖
作者
Jianxin Mao,吴琪,Fu Yuan,Guanyi Wang,Dong Wang,Peiran Zhang,Chu Gao,Qiliang Shang,Sirao Yuan,Changhe Gao,杜炳龙,Ting He,Jingyan Hu,Chao Zheng,Zhuojing Luo,Di Wang,Liu Yang,Di Wang,Liu Yang
出处
期刊:Science Advances
[American Association for the Advancement of Science]
日期:2026-06-26
卷期号:12 (26): eaee1546-eaee1546
标识
DOI:10.1126/sciadv.aee1546
摘要
Angiogenesis represents a key pathological basis for intervertebral disc degeneration (IDD) and discogenic low back pain (LBP), yet its underlying mechanisms remain elusive. Here, we show that mechanical stress induces disc vascularization by activating Hippo signaling and inducing Yes-associated protein (YAP) degradation in nucleus pulposus (NP) cells. This finding was corroborated in NP-specific Yap conditional knockout mice, which exhibited enhanced disc vascularization. Mechanistically, YAP undergoes liquid-liquid phase separation to form biomolecular condensates that recruit and sequester the transcription factor SNAI1. Disruption of the YAP condensates or release of SNAI1 restores SNAI1-mediated transcription, leading to the up-regulation of its target proangiogenic factors ANGPTL4 and VEGFA, which synergistically promote intervertebral disc angiogenesis through metabolic support and signaling activation. Last, using a microneedle delivery system loaded with NP cell membrane–coated liposomes, we demonstrated that targeted inhibition of the Hippo pathway or SNAI1 in NP effectively alleviates mechanical stress–induced disc vascularization, suggesting an effective strategy for alleviating LBP.
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