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用于可生物降解手术线的挤压和热拉拔MgCa0.7合金的微观结构及体外评估

Microstructure and In Vitro Evaluation of Extruded and Hot Drawn Alloy MgCa0.7 for Biodegradable Surgical Wires.

作者信息

Milenin Andrij, Wróbel Mirosław, Kustra Piotr, Byrska-Wójcik Dorota, Sulej-Chojnacka Joanna, Płonka Bartłomiej, Łukowicz Krzysztof, Truchan Karolina, Osyczka Anna

机构信息

Faculty of Metals Engineering and Industrial Computer Science, AGH University of Science and Technology, al. Mickiewicza 30, 30-059 Kraków, Poland.

Łukasiewicz Research Network-Metal Forming Institute, ul. Jana Pawła II 14, 61-139 Poznań, Poland.

出版信息

Materials (Basel). 2021 Nov 5;14(21):6673. doi: 10.3390/ma14216673.

Abstract

The MgCa0.7 alloy may be a promising material for biodegradable surgical wires. In this paper, the technology for producing surgical wires from this alloy has been developed, based both on finite element modelling and experimental study. In particular, the extrusion and hot-drawing effects on the mechanical properties, microstructures, in-vitro rates of biocorrosion, and cytotoxicity to human cancer cells (SaOS-2) and healthy (hPDL) ones, have been determined. An approximately 30-40% increase in corrosion rate due to increasing hot-drawing temperature was observed. An effect of hot-drawing temperature on cytotoxicity was also found. Notably, at various stages of the final wires' production, the MgCa0.7 alloy became toxic to cancer cells. This cytotoxicity depended on the alloys' processing parameters and was maximal for the as-extruded rod and for the wires immediately after hot drawing at 440 °C. Thus, the careful selection of processing parameters makes it possible to obtain a product that is not only a promising candidate for biodegradable surgical wires, but one which also has intrinsic bioactive properties that produce antitumor activity.

摘要

MgCa0.7合金可能是一种有前途的可生物降解手术线材料。本文基于有限元建模和实验研究,开发了用这种合金生产手术线的技术。特别是,已经确定了挤压和热拉拔对机械性能、微观结构、体外生物腐蚀速率以及对人癌细胞(SaOS-2)和健康细胞(hPDL)的细胞毒性的影响。观察到由于热拉拔温度升高,腐蚀速率大约增加了30-40%。还发现了热拉拔温度对细胞毒性的影响。值得注意的是,在最终线材生产的各个阶段,MgCa0.7合金对癌细胞变得有毒。这种细胞毒性取决于合金的加工参数,对于挤压棒材以及在440°C热拉拔后立即得到的线材来说毒性最大。因此,仔细选择加工参数有可能获得一种产品,它不仅是可生物降解手术线的有前途的候选材料,而且还具有产生抗肿瘤活性的内在生物活性特性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/95d9/8587299/456c944c1a25/materials-14-06673-g001.jpg

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