细胞和组织在摩擦腐蚀过程中的体外研究:一个系统的范围综述

Q2 Materials Science
S. Radice , J. Westrick , K. Ebinger , T.M. Mathew , M.A. Wimmer
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引用次数: 2

摘要

种植体的摩擦腐蚀在骨科和牙科研究领域得到了广泛的关注。本研究对摩擦腐蚀试验与细胞/组织培养相结合的研究方法进行了系统的范围综述,旨在确定相关的当前问题和未来挑战。我们使用4个不同的数据库来识别响应铰接关键字搜索策略的1022条记录。在删除重复和不符合搜索标准的文章后,我们评估了20篇全文文章的合格性。在20篇符合条件的文章中,我们绘制了8条关于细胞培养结合种植材料(钛、钴铬钼和/或不锈钢)摩擦腐蚀测试的记录。出版年份为1991年至2019年。使用的细胞系主要是小鼠。两个记录使用了微动测试,而6个记录使用了带销盘摩擦计的往复滑动。4条记录采用电化学三电极装置。我们确定了两种实验方法:在金属上培养的细胞(5条记录)和在金属附近培养的细胞(3条记录)。在细胞存在下的摩擦腐蚀过程的研究活动已在世界范围内由几个小组进行。在1990年代对这一主题的最初兴趣有限之后,研究活动在过去十年中重新开始,用技术上更先进的装置和分析工具更新了这一主题。我们认为主要问题是缺乏测试可重复性和磨损颗粒表征。我们认为,主要的挑战在于跨学科的方法,实验的实验室间验证,以及结果的解释,特别是与潜在的临床意义相关的结果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
In-vitro studies on cells and tissues in tribocorrosion processes: A systematic scoping review

Tribocorrosion of implants has been widely addressed in the orthopedic and dental research fields. This study is a systematic scoping review about research methods that combine tribocorrosion tests with cells/tissues cultures, aimed to identify related current problems and future challenges.

We used 4 different databases to identify 1022 records responding to an articulated keywords search-strategy. After removing the duplicates and the articles that didn't meet the search-criteria, we assessed 20 full-text articles for eligibility. Of the 20 eligible articles, we charted 8 records on cell cultures combined with tribocorrosion tests on implant materials (titanium, CoCrMo, and/or stainless steel). The year of publication ranged from 1991 to 2019. The cell line used was mostly murine. Two records used fretting tests, while 6 used reciprocating sliding with pin-on-disc tribometers. An electrochemical three-electrode setup was used in 4 records. We identified overall two experimental approaches: cells cultured on the metal (5 records), and cells cultured near the metal (3 records).

Research activities on tribocorrosion processes in the presence of cells have been undertaken worldwide by a few groups. After a limited initial interest on this topic in the 1990's, research activities have restarted in the last decade, renewing the topic with technologically more advanced setups and analytical tools. We identified the main problems to be the lack of test reproducibility and wear particle characterization. We believe that the main challenges lay in the interdisciplinary approach, the inter-laboratory validation of experiments, and the interpretation of results, particularly in relation to potential clinical significance.

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来源期刊
Biotribology
Biotribology Materials Science-Surfaces, Coatings and Films
CiteScore
4.20
自引率
0.00%
发文量
17
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