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人骨源细胞在新鲜和老化的富勒烯C60薄膜上的生长及潜在损伤

Growth and potential damage of human bone-derived cells on fresh and aged fullerene c60 films.

作者信息

Kopova Ivana, Bacakova Lucie, Lavrentiev Vasily, Vacik Jiri

机构信息

Institute of Physiology, Academy of Sciences of the Czech Republic, Videnska 1083, 14220 Prague 4-Krc, Czech Republic.

出版信息

Int J Mol Sci. 2013 Apr 26;14(5):9182-204. doi: 10.3390/ijms14059182.

Abstract

Fullerenes are nanoparticles composed of carbon atoms arranged in a spherical hollow cage-like structure. Numerous studies have evaluated the therapeutic potential of fullerene derivates against oxidative stress-associated conditions, including the prevention or treatment of arthritis. On the other hand, fullerenes are not only able to quench, but also to generate harmful reactive oxygen species. The reactivity of fullerenes may change in time due to the oxidation and polymerization of fullerenes in an air atmosphere. In this study, we therefore tested the dependence between the age of fullerene films (from one week to one year) and the proliferation, viability and metabolic activity of human osteosarcoma cells (lines MG-63 and U-2 OS). We also monitored potential membrane and DNA damage and morphological changes of the cells. After seven days of cultivation, we did not observe any cytotoxic morphological changes, such as enlarged cells or cytosolic vacuole formation. Furthermore, there was no increased level of DNA damage. The increasing age of the fullerene films did not cause enhancement of cytotoxicity. On the contrary, it resulted in an improvement in the properties of these materials, which are more suitable for cell cultivation. Therefore, fullerene films could be considered as a promising material with potential use as a bioactive coating of cell carriers for bone tissue engineering.

摘要

富勒烯是由碳原子排列成球形中空笼状结构组成的纳米颗粒。众多研究评估了富勒烯衍生物针对氧化应激相关病症的治疗潜力,包括关节炎的预防或治疗。另一方面,富勒烯不仅能够淬灭,还能够产生有害的活性氧物种。由于富勒烯在空气气氛中的氧化和聚合作用,其反应活性可能会随时间变化。因此,在本研究中,我们测试了富勒烯薄膜的使用时长(从一周到一年)与人类骨肉瘤细胞(MG-63和U-2 OS细胞系)的增殖、活力和代谢活性之间的相关性。我们还监测了细胞潜在的膜损伤和DNA损伤以及形态变化。培养七天后,我们未观察到任何细胞毒性形态变化,如细胞肿大或胞质空泡形成。此外,DNA损伤水平也未升高。富勒烯薄膜使用时长的增加并未导致细胞毒性增强。相反,它使这些材料的性能得到改善,更适合细胞培养。因此,富勒烯薄膜可被视为一种有前景的材料,具有作为骨组织工程细胞载体生物活性涂层的潜在用途。

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