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用于医疗器械的钽铌钛锆多元素合金。

TaMoNbTiZr Multielement Alloy for Medical Instruments.

作者信息

Mates Ileana Mariana, Geanta Victor, Manu Doina, Kelemen Hajnal, Onici Adrian Emanuel, Mirza-Rosca Julia Claudia, Voiculescu Ionelia

机构信息

"Dr. Carol Davila" Clinical Hospital of Nephrology, Carol Davila University of Medicine and Pharmacy, 010731 Bucharest, Romania.

Material Science and Engineering Faculty, National University of Science and Technology Politehnica Bucharest, 060042 Bucharest, Romania.

出版信息

Materials (Basel). 2025 Apr 20;18(8):1876. doi: 10.3390/ma18081876.

Abstract

In this paper, a new TaMoNbTiZr multielement alloy has been designed, using chemical elements that exhibit extremely low bio-toxicity for the human body. The alloy was obtained by melting in vacuum arc remelting (VAR) equipment MRF ABJ 900 from high-purity chemical elements (99.5%) as mini-ingots having about 40 g weight each. The biocompatible alloys underwent changes in hardness after performing the annealing at 900 °C for 2 h, followed by cooling in water. The new alloy had an average hardness in the cast state of 545 HV0.5, and after heat treatment, it hardened to a value of 984 HV0.5, over 40% higher than that in the casting state, which ensures a longer working period. To use them as materials for medical instruments, their biocompatibility was highlighted through specific laboratory tests. For this, mesenchymal stem cells isolated from bone tissue and a human fibroblast cell line were cultured in vitro on the TaMoNbTiZr alloy's surface. The biocompatibility of the alloy with the biological environment was evaluated by analyzing cell viability, adhesion, and proliferation, and in parallel, the cytolysis effects manifested by the increase in lactate dehydrogenase activity in the culture media were analyzed.

摘要

在本文中,设计了一种新型的TaMoNbTiZr多元素合金,所使用的化学元素对人体具有极低的生物毒性。该合金通过在真空电弧重熔(VAR)设备MRF ABJ 900中,将高纯度(99.5%)化学元素熔炼成约40克重的微型铸锭而制得。生物相容性合金在900℃下退火2小时后水冷,硬度发生了变化。新合金铸态的平均硬度为545 HV0.5,热处理后硬度提高到984 HV0.5,比铸态高出40%以上,这确保了更长的工作周期。为了将它们用作医疗器械材料,通过特定的实验室测试突出了它们的生物相容性。为此,从骨组织分离的间充质干细胞和人成纤维细胞系在TaMoNbTiZr合金表面进行体外培养。通过分析细胞活力、粘附和增殖来评估合金与生物环境的生物相容性,同时分析培养基中乳酸脱氢酶活性增加所表现出的细胞溶解作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1b7d/12029131/f1dd566c8550/materials-18-01876-g001.jpg

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