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氯化钴模拟缺氧对髓核细胞的生物学效应及其与物理缺氧的可比性。

The biological effect of cobalt chloride mimetic-hypoxia on nucleus pulposus cells and the comparability with physical hypoxia .

作者信息

Gao Xiao-Xin, Liu Chen-Hao, Hu Zhi-Lei, Li Hai-Yin, Chang Xian, Li Yue-Yang, Zhang Yu-Yao, Zhai Yu, Li Chang-Qing

机构信息

Department of Orthopedics, Xinqiao Hospital, Army Military Medical University, 400037 Chongqing, China.

出版信息

Front Biosci (Landmark Ed). 2021 Oct 30;26(10):799-812. doi: 10.52586/4989.

Abstract

: Nucleus pulposus cells (NPCs) are cells extracted from the intervertebral disc and are important for research into intervertebral disc degeneration (IVDD). NPCs live in an avascular and relatively hypoxic environment. Cobalt chloride (CoCl) has been used in many cell studies to mimic hypoxia. The objective of this study was to explore the possibility of using CoCl to induce mimetic-hypoxia for NPCs and the comparison with hypoxia (1% O) . : Rat nucleus pulposus cells of Passage 3-5 were used in this research. Cell viability, rate of cell apoptosis, ROS (reactive oxygen species) generation, cell migration, extracellular pH and extracellular matrix metabolism were determined to compare the influence of hypoxia (1% O) and CoCl on NPCs. : We found that the effects of CoCl on NPCs was dose-dependent. At the proper concentration, CoCl could be used to elicit chemical hypoxia for nucleus pulposus cells and many biological effects, analogous to physical hypoxia (1% O), could be achieved such as enhanced cell viability, decreased apoptosis and activated extracellular matrix metabolism. On the other hand, CoCl mimetic-hypoxia did not affect NPCs glycolysis and migration compared to physical hypoxia. In addition, high concentration of CoCl (>200 μM) is harmful to NPCs with high rates of apoptosis and ECM (extracellular matrix) degradation. : It is feasible and convenient to use CoCl to induce chemical mimetic hypoxia for culturing NPCs on the premise of appropriate concentration. But in aspects of cell migration and glycolysis, CoCl could not achieve similar results with physical hypoxia. This study may provide a convenient method and enlightenment to induce mimetic-hypoxia for researchers studying NPCs and IVVD.

摘要

髓核细胞(NPCs)是从椎间盘提取的细胞,对椎间盘退变(IVDD)研究具有重要意义。NPCs生活在无血管且相对缺氧的环境中。氯化钴(CoCl)已在许多细胞研究中用于模拟缺氧。本研究的目的是探讨使用CoCl诱导NPCs模拟缺氧的可能性,并与缺氧(1% O₂)进行比较。:本研究使用第3 - 5代大鼠髓核细胞。测定细胞活力、细胞凋亡率、活性氧(ROS)生成、细胞迁移、细胞外pH值和细胞外基质代谢,以比较缺氧(1% O₂)和CoCl对NPCs的影响。:我们发现CoCl对NPCs的作用呈剂量依赖性。在适当浓度下,CoCl可用于引发髓核细胞的化学性缺氧,并可实现许多类似于物理性缺氧(1% O₂)的生物学效应,如增强细胞活力、降低凋亡率和激活细胞外基质代谢。另一方面,与物理性缺氧相比,CoCl模拟缺氧对NPCs的糖酵解和迁移没有影响。此外,高浓度的CoCl(>200 μM)对NPCs有害,会导致高凋亡率和细胞外基质(ECM)降解。:在适当浓度的前提下,使用CoCl诱导化学性模拟缺氧来培养NPCs是可行且方便的。但在细胞迁移和糖酵解方面,CoCl无法取得与物理性缺氧类似的结果。本研究可能为研究NPCs和IVVD的研究人员提供一种诱导模拟缺氧的便捷方法和启示。

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