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氧化锆生物陶瓷及预期与皮肤接触的陶瓷是否呈惰性?

Are Zirconia Bioceramics and Ceramics Intended to Come in Contact with Skin Inert?

作者信息

Reclaru Lucien, Ardelean Lavinia Cosmina, Miu Catalin Adrian, Grecu Alexandru Florian

机构信息

Scientific Consultant Biomaterials and Medical Devices, 103 Paul-Vouga, 2074 Marin-Neuchâtel, Switzerland.

Department of Technology of Materials and Devices in Dental Medicine, "Victor Babes" University of Medicine and Pharmacy Timisoara, 2 Eftimie Murgu sq, 300041 Timisoara, Romania.

出版信息

Materials (Basel). 2020 Apr 5;13(7):1697. doi: 10.3390/ma13071697.

Abstract

Generally speaking, ceramic materials are insensitive to corrosion, compared to most other materials. The present study questions the fact that ceramics are inert. Two major aspects are to be considered: the stability of zirconia over time, the stable tetragonal phase transforming into an unstable monoclinic form; the multitude of manufacturing methods, using various additives, sintering additives, oxides mixing, impurities, grain boundaries, and porosities which strongly influence the corrosion behavior and chemical degradation. In case of the investigated ceramics two paths were pursued:a) Dissolutions of ceramics in a mixture of HNO 60% and HF 40% ultrapure medium.b) Release of cations from ceramics in various mediums:dental bioceramics in a 0.07 M HCl medium and a 0.1% NaF+0.1% KF medium; ceramics used in jewelry and watchmaking applications in a HCl 0.07 M medium and an artificial sweat medium. By inductively coupled plasma-optical emission spectrometry/mass spectrometry (ICP-OES/MS), traces of significant chemical elements were assessed: Hf, Cr, Y, As, Pb, Al, Fe, Cu, Se, Sb, La, Ni, Co, Sb, Ta, Te, Ba, Sm, Nb, Hg, Cd, Sr, As and Se. In ceramics used in jewelry and watchmaking applications the concentrations found vary from one ceramic to another, including toxic elements such as Te, Ba, As, Pb, Sm, Hg and Cd, therefore being technical zirconia ceramics which are not intended for the medical field. For ceramics used in jewelry and watchmaking applications a screening identification test for Ni, Co, Cu and Fe with strips of type Merckoquant (Merck, Kenilworth, NJ, USA) was also performed. The obtained data prove that the zirconia ceramics in question are far from being "inert".

摘要

一般来说,与大多数其他材料相比,陶瓷材料对腐蚀不敏感。本研究对陶瓷是惰性的这一事实提出了质疑。有两个主要方面需要考虑:氧化锆随时间的稳定性,即稳定的四方相转变为不稳定的单斜相;多种制造方法,使用各种添加剂、烧结添加剂、氧化物混合、杂质、晶界和孔隙率,这些都会强烈影响腐蚀行为和化学降解。对于所研究的陶瓷,采取了两条途径:a)将陶瓷溶解在60%硝酸和40%氢氟酸的超纯混合介质中。b)在各种介质中从陶瓷中释放阳离子:牙科生物陶瓷在0.07M盐酸介质和0.1%氟化钠+0.1%氟化钾介质中;用于珠宝和制表应用的陶瓷在0.07M盐酸介质和人工汗液介质中。通过电感耦合等离子体发射光谱法/质谱法(ICP-OES/MS)评估了痕量的重要化学元素:铪、铬、钇、砷、铅、铝、铁、铜、硒、锑、镧、镍、钴、锑、钽、碲、钡、钐、铌、汞、镉、锶、砷和硒。在用于珠宝和制表应用的陶瓷中,发现的浓度因陶瓷而异,包括碲、钡、砷、铅、钐、汞和镉等有毒元素,因此是不打算用于医疗领域的工业氧化锆陶瓷。对于用于珠宝和制表应用的陶瓷,还使用Merckoquant型试纸(美国新泽西州肯尼沃思市默克公司)对镍、钴、铜和铁进行了筛选鉴定测试。获得的数据证明,所讨论的氧化锆陶瓷远非“惰性”。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3100/7178696/bed5877c2781/materials-13-01697-g001.jpg

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