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氢化 TiO 纳米管阵列对蛋白质吸附的影响及其与成骨样细胞的相容性。

Effects of hydrogenated TiO nanotube arrays on protein adsorption and compatibility with osteoblast-like cells.

机构信息

Laboratory of Biomaterials and Biomechanics, Beijing Key Laboratory of Tooth Regeneration and Function Reconstruction, School of Stomatology, Capital Medical University.

Laboratory of Advanced Functional Materials, Department of Materials Science and Engineering, Tsinghua University.

出版信息

Int J Nanomedicine. 2018 Apr 4;13:2037-2049. doi: 10.2147/IJN.S155532. eCollection 2018.

Abstract

BACKGROUND

Modified titanium (Ti) substrates with titanium dioxide (TiO) nanotubes have broad usage as implant surface treatments and as drug delivery systems.

METHODS

To improve drug-loading capacity and accelerate bone integration with titanium, in this study, we hydrogenated anodized titanium dioxide nanotubes (TNTs) by a thermal treatment. Three groups were examined, namely: hydrogenated TNTs (H-TNTs, test), unmodified TNTs (air-TNTs, control), and Ti substrates (Ti, control).

RESULTS

Our results showed that oxygen vacancies were present in all the nanotubes. The quantity of -OH groups greatly increased after hydrogenation. Furthermore, the protein adsorption and loading capacity of the H-TNTs were considerably enhanced as compared with the properties of the air-TNTs (<0.05). Additionally, time-of-flight secondary ion mass spectrometry (TOF-SIMS) was used to investigate the interactions of TNTs with proteins. During the protein-loading process, the H-TNTs not only enabled rapid protein adsorption, but also decreased the rate of protein elution compared with that of the air-TNTs. We found that the H-TNTs exhibited better biocompatibility than the air-TNT and Ti groups. Both cell adhesion activity and alkaline phosphatase activity were significantly improved toward MG-63 human osteoblast-like cells as compared with the control groups (<0.05).

CONCLUSION

We conclude that hydrogenated TNTs could greatly improve the loading capacity of bioactive molecules and MG-63 cell proliferation.

摘要

背景

经二氧化钛(TiO)纳米管修饰的钛(Ti)基底在植入物表面处理和药物输送系统中具有广泛的应用。

方法

为了提高钛的载药能力并加速其与骨骼的整合,在本研究中,我们通过热疗对氧化钛纳米管(TNTs)进行了氢化处理。考察了三组,分别为:氢化氧化钛纳米管(H-TNTs,实验组)、未经修饰的氧化钛纳米管(空气-TNTs,对照组)和 Ti 基底(Ti,对照组)。

结果

我们的结果表明,所有纳米管中都存在氧空位。氢化后-OH 基团的数量大大增加。此外,与空气-TNTs 相比(<0.05),H-TNTs 的蛋白质吸附和载药量显著增加。此外,利用飞行时间二次离子质谱(TOF-SIMS)研究了 TNTs 与蛋白质的相互作用。在蛋白质加载过程中,H-TNTs 不仅能够快速吸附蛋白质,而且还降低了蛋白质洗脱的速率。与空气-TNT 和 Ti 组相比,我们发现 H-TNTs 具有更好的生物相容性。与对照组相比(<0.05),MG-63 人成骨样细胞的细胞黏附活性和碱性磷酸酶活性均显著提高。

结论

我们得出结论,氢化氧化钛纳米管可以极大地提高生物活性分子和 MG-63 细胞增殖的载药量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/312f/5894653/189f92c40387/ijn-13-2037Fig1.jpg

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