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细胞毒性作用及镍离子摄取在骨关节炎和成骨细胞中的比较分析。

Cytotoxic effects and comparative analysis of Ni ion uptake by osteoarthritic and physiological osteoblasts.

机构信息

Department of Pathophysiology, Faculty of Medicine, Masaryk University, Kamenice 5, Brno, Czech Republic.

Department of Chemistry, Faculty of Science, Masaryk University, Kamenice 5, Brno, Czech Republic.

出版信息

Sci Rep. 2024 Jul 12;14(1):16133. doi: 10.1038/s41598-024-67157-9.

Abstract

Nickel(Ni)-containing materials have been widely used in a wide range of medical applications, including orthopaedics. Despite their excellent properties, there is still a problem with the release of nickel ions into the patient's body, which can cause changes in the behaviour of surrounding cells and tissues. This study aims to evaluate the effects of Ni on bone cells with an emphasis on the determination of Ni localization in cellular compartments in time. For these purposes, one of the most suitable models for studying the effects induced by metal implants was used-the patient's osteoarthritic cells. Thanks to this it was possible to simulate the pathophysiological conditions in the patient's body, as well as to evaluate the response of the cells which come into direct contact with the material after the implantation of the joint replacement. The largest differences in cell viability, proliferation and cell cycle changes occurred between Ni 0.5 mM and 1 mM concentrations. Time-dependent localization of Ni in cells showed that there is a continuous transport of Ni ions between the nucleus and the cytoplasm, as well as between the cell and the environment. Moreover, osteoarthritic osteoblasts showed faster changes in concentration and ability to accumulate more Ni, especially in the nucleus, than physiological osteoblasts. The differences in Ni accumulation process explains the higher sensitivity of patient osteoblasts to Ni and may be crucial in further studies of implant-derived cytotoxic effects.

摘要

含镍(Ni)材料已广泛应用于众多医学领域,包括骨科。尽管它们具有优异的性能,但仍存在镍离子释放到患者体内的问题,这可能导致周围细胞和组织行为发生变化。本研究旨在评估 Ni 对骨细胞的影响,重点在于确定 Ni 在细胞区室中的时间定位。为此,使用了最适合研究金属植入物诱导效应的模型之一——患者的骨关节炎细胞。通过这种方式,可以模拟患者体内的病理生理条件,并评估与关节置换植入物直接接触的细胞的反应。细胞活力、增殖和细胞周期变化的最大差异发生在 Ni 0.5 mM 和 1 mM 浓度之间。Ni 在细胞中的时间依赖性定位表明,Ni 离子在核和细胞质之间以及细胞和环境之间存在持续的转运。此外,与生理骨细胞相比,骨关节炎成骨细胞表现出更快的浓度变化和积累更多 Ni 的能力,尤其是在细胞核中。Ni 积累过程的差异解释了患者成骨细胞对 Ni 的更高敏感性,这在进一步研究植入物衍生的细胞毒性效应时可能至关重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f285/11245524/4c0c0a2852af/41598_2024_67157_Fig1_HTML.jpg

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