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确定钛纳米管特性对骨植入物表面性能的相对重要性:基于模糊方法的质量源于设计研究。

Determining the relative importance of titania nanotubes characteristics on bone implant surface performance: A quality by design study with a fuzzy approach.

机构信息

School of Engineering, Griffith University, Gold Coast, Australia.

The University of Queensland, School of Dentistry, Herston QLD 4006, Australia.

出版信息

Mater Sci Eng C Mater Biol Appl. 2020 Sep;114:110995. doi: 10.1016/j.msec.2020.110995. Epub 2020 Apr 21.

Abstract

TiO nanotubes (TNTs) are a promising bone/dental implant surface modification strategy with enhanced bioactivity and local therapeutic functions. However, inconsistencies related to the understanding of the influence of various TNTs characteristics on Ti implant functions, and the multi-factorial inter-dependence of such characteristics, requires an in-depth Quality by Design (QbD) analysis towards optimizing TNTs-modified implants. To this end, an extensive systematic literature search was undertaken to identify the various TNTs characteristics that may influence implant performance. Subsequently, in order to facilitate a QbD analysis, an expert questionnaire survey was carried out to determine the perceived contribution of various TNTs characteristics on an implant's biological, physicochemical, and mechanical performance. To achieve this goal, the Quality Function Deployment method was employed using symmetrical triangular fuzzy numbers to translate qualitative expert opinion into meaningful quantitative information. The results show that pore diameter, inter-nanotube distance and wall thickness are the TNTs characteristics with the most influential effects on the overall implant performance. This pioneering study evaluates perceived importance of various parameters contributing to TNTs functionality, and represents a step forward in the implementation of QbD strategies towards optimizing nano-engineered Ti implants.

摘要

TiO 纳米管(TNTs)是一种很有前途的骨/牙科植入物表面改性策略,具有增强的生物活性和局部治疗功能。然而,由于对各种 TNTs 特性对 Ti 植入物功能影响的理解存在不一致性,以及这些特性的多因素相互依赖性,需要进行深入的质量源于设计(QbD)分析,以优化 TNTs 改性植入物。为此,进行了广泛的系统文献检索,以确定可能影响植入物性能的各种 TNTs 特性。随后,为了便于进行 QbD 分析,进行了专家问卷调查,以确定各种 TNTs 特性对植入物的生物学、物理化学和机械性能的感知贡献。为了实现这一目标,使用对称三角模糊数的质量功能展开方法将定性专家意见转化为有意义的定量信息。结果表明,孔径、纳米管之间的距离和壁厚是对整体植入物性能影响最大的 TNTs 特性。这项开创性的研究评估了对 TNTs 功能有贡献的各种参数的重要性,代表着朝着优化纳米工程 Ti 植入物的 QbD 策略实施迈出了一步。

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