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首页> 外文期刊>Stem cells international >Hydrostatic Pressure Modulates Intervertebral Disc Cell Survival and Extracellular Matrix Homeostasis via Regulating Hippo-YAP/TAZ Pathway
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Hydrostatic Pressure Modulates Intervertebral Disc Cell Survival and Extracellular Matrix Homeostasis via Regulating Hippo-YAP/TAZ Pathway

机译:通过调节Hippo-Yap / Taz途径调节静脉液压压力调节椎间盘纤维素存活和细胞外基质稳态

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Established studies proved that hydrostatic pressure had multiple effects on the biological behavior of the intervertebral disc (IVD). However, the conclusions of the previous studies were inconsistent, due to the difference in hydrostatic loading devices and observing methods used in these studies. The current study is aimed at investigating the role of dynamic hydrostatic pressure in regulating biological behavior of the notochordal nucleus pulposus (NP) and fibrocartilaginous inner annulus fibrosus (AF) and its possible mechanism using our novel self-developed hydrostatic pressure bioreactor. The differences in the biological behavior of the rabbit IVD tissues under different degree of hydrostatic pressure were evaluated via histological analysis. Results revealed that low-loading dynamic hydrostatic pressure was beneficial for cell survival and extracellular matrix (ECM) homeostasis in notochordal NP and fibrocartilaginous inner AF via upregulating N-cadherin (N-CDH) and integrin β 1. In comparison, high-magnitude dynamic hydrostatic pressure aggravated the breakdown of ECM homeostasis in NP and inner AF via enhancing the Hippo-YAP/TAZ pathway-mediated cell apoptosis. Moreover, inner AF exhibited greater tolerance to physiological medium-loading degree of hydrostatic pressure than notochordal NP. The potential mechanism was related to the differential expression of mechanosensing factors in notochordal NP and fibrocartilaginous inner AF, which affects the fate of the cells under hydrostatic pressure. Our findings may provide a better understanding of the regulatory role of hydrostatic pressure on the cellular fate commitment and matrix metabolism of the IVD and more substantial evidence for using hydrostatic pressure bioreactor in exploring the IVD degeneration mechanism as well as regeneration strategies.
机译:已建立的研究证明,静水压力对椎间盘(IVD)的生物行为有多种影响。然而,由于在这些研究中使用的静水装载装置和观察方法的差异,之前研究的结论是不一致的。目前的研究旨在调查动态静压压力在调节Notochordlal牙髓(NP)和纤维纤维内部环空心环(AF)的生物学行为的作用及其使用我们的新型自我开发的静压生物生物反应器的可能机制。通过组织学分析评价兔IVD组织的生物学行为的差异。通过组织学分析评价不同程度的静液压。结果表明,低动态加载静水压力是对于细胞存活和细胞外基质(ECM)中脊索NP和纤维软骨AF内经由上调N-钙粘蛋白(N-CDH)稳态有益和整合β1作为比较,高幅度动态通过增强Hippo-YAP / TAZ途径介导的细胞凋亡,静水压压力加剧了NP和内部AF中的ECM和内部AF中的细分。此外,内部AF表现出比据未被纳入NP的静压压力的生理中等负载程度更大的耐受性。的潜在机制是有关在脊索NP和纤维软骨AF内,从而影响细胞的静水压力下的命运mechanosensing因子的差异表达。我们的研究结果可以更好地了解静水压力对IVD细胞命运承诺和基质代谢的调节作用以及使用静压生物反应器在探索IVD退化机制以及再生策略方面的更实质性证据。

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