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二氧化钛纳米管结构对血小板行为的影响:结构-性能关系

Effect of construction of TiO nanotubes on platelet behaviors: Structure-property relationships.

作者信息

Huang Qiaoling, Yang Yun, Zheng Dajiang, Song Ran, Zhang Yanmei, Jiang Pinliang, Vogler Erwin A, Lin Changjian

机构信息

State Key Laboratory for Physical Chemistry of Solid Surfaces, and Department of Chemistry, College of Chemistry and Chemical Engineering, Xiamen University, Xiamen 361005, China; Research Institute for Biomimetics and Soft Matter, and Department of Physics, School of Physics and Mechanical & Electrical Engineering, Xiamen University, Xiamen 361005, China; Shenzhen Research Institute of Xiamen University, Shenzhen 518057, China.

Beijing Medical Implant Engineering Research Center, Beijing 100082, China; Beijing Engineering Laboratory of Functional Medical Materials and Devices, Beijing 100082, China.

出版信息

Acta Biomater. 2017 Mar 15;51:505-512. doi: 10.1016/j.actbio.2017.01.044. Epub 2017 Jan 16.

Abstract

UNLABELLED

Blood compatibility of TiO nanotubes (TNTs) has been assessed in rabbit platelet-rich plasma (PRP), which combines activation of both blood plasma coagulation and platelets. We find that (i) amorphous TiO nanotubes (TNTs) with relatively larger outer diameters led to reduced platelet adhesion/activation, (ii) TNTs with relatively smaller outer diameters in a predominately rutile phase also inhibited platelet adhesion and activation, and (iii) a pervasive fibrin network formed on larger outer diameter TNTs in a predominately anatase phase. Thus, this study suggests that combined effect of crystalline phase and surface chemistry controls blood-contact behavior of TNTs. A more comprehensive mechanism is proposed for understanding hemocompatibility of TiO which might prove helpful as a guide to prospective design of TiO-based biomaterials.

STATEMENT OF SIGNIFICANCE

To realize optimal design and construction of biomaterials with desired properties for blood contact materials, a comprehensive understanding of structure-property relationships is required. In the existing literature, TiO nanotube has been reported to be a good candidate for biomedical applications. However, it is noticeable that the blood compatibility of TiO nanotubes (TNTs) remains obscure or even inconsistent in the previously published works. The inconsistency could derive from different research protocols, material properties or blood sources. Thus, a thorough investigation of the effect of surface properties on blood compatibility is crucial to the development of titanium based materials. In this paper, we explored the effect of surface properties on the response of platelet-rich plasma, especially surface morphology, chemistry, wettability and crystalline phase. The results indicated that crystalline phase was a dominant factor in platelet behaviors. Reduced adhesion and activation of platelets were observed on amorphous and rutile dominated TNTs, whereas anatase dominated TNTs activated the formation of fibrin network. We further proposed a hypothetical mechanism for better understanding of how surface properties affect the response of platelet-rich plasma. Therefore, this study expands the fundamental understanding of the structure-property relationships of titanium based materials.

摘要

未标记

已在富含兔血小板血浆(PRP)中评估了TiO纳米管(TNTs)的血液相容性,PRP会同时激活血浆凝血和血小板。我们发现:(i)外径相对较大的无定形TiO纳米管(TNTs)可减少血小板黏附/激活;(ii)主要为金红石相、外径相对较小的TNTs也能抑制血小板黏附和激活;(iii)在主要为锐钛矿相、外径较大的TNTs上形成了广泛的纤维蛋白网络。因此,本研究表明晶相和表面化学的综合作用控制了TNTs的血液接触行为。针对理解TiO的血液相容性提出了一种更全面的机制,这可能有助于指导基于TiO的生物材料的前瞻性设计。

意义声明

为了实现具有所需血液接触材料性能的生物材料的最佳设计和构建,需要全面了解结构-性能关系。在现有文献中,TiO纳米管已被报道是生物医学应用的良好候选材料。然而,值得注意的是,TiO纳米管(TNTs)的血液相容性在先前发表的作品中仍不明确甚至不一致。这种不一致可能源于不同的研究方案、材料特性或血液来源。因此,深入研究表面特性对血液相容性的影响对于钛基材料的开发至关重要。在本文中,我们探讨了表面特性对富含血小板血浆反应的影响,特别是表面形态、化学性质、润湿性和晶相。结果表明晶相是血小板行为的主要因素。在无定形和金红石为主的TNTs上观察到血小板黏附和激活减少,而锐钛矿为主的TNTs激活了纤维蛋白网络的形成。我们进一步提出了一种假设机制,以更好地理解表面特性如何影响富含血小板血浆的反应。因此,本研究扩展了对钛基材料结构-性能关系的基本理解。

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