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用于牙种植体的超亲水纳米纹理表面:早期唾液污染和湿储存的影响。

Superhydrophilic Nanotextured Surfaces for Dental Implants: Influence of Early Saliva Contamination and Wet Storage.

作者信息

Kunrath Marcel F, Correia André, Teixeira Eduardo R, Hubler Roberto, Dahlin Christer

机构信息

Department of Biomaterials, Institute of Clinical Sciences, The Sahlgrenska Academy at University of Gothenburg, P.O. Box 412, SE 405 30 Göteborg, Sweden.

Department of Dentistry, School of Health and Life Sciences, Pontifical Catholic University of Rio Grande do Sul (PUCRS), Porto Alegre 90619-900, Brazil.

出版信息

Nanomaterials (Basel). 2022 Jul 28;12(15):2603. doi: 10.3390/nano12152603.

Abstract

Hydrophilic and nanotextured surfaces for dental implants have been reported as relevant properties for early osseointegration. However, these surface characteristics are quite sensitive to oral interactions. Therefore, this pilot study aimed to investigate the superficial alterations caused on hydrophilic nanotubular surfaces after early human saliva interaction. Titanium disks were treated using an anodization protocol followed by reactive plasma application in order to achieve nanotopography and hydrophilicity, additionally; surfaces were stored in normal atmospheric oxygen or wet conditioning. Following, samples were interacted with saliva for 10 min and analyzed regarding physical-chemical properties and cellular viability. Saliva interaction did not show any significant influence on morphological characteristics, roughness measurements and chemical composition; however, hydrophilicity was statistically altered compromising this feature when the samples were stored in common air. Cellular viability tested with pre-osteoblasts cell line (MC3T3-E1) reduced significantly at 48 h on the samples without wet storage after saliva contamination. The applied wet-storage methodology appears to be effective in maintaining properties such as hydrophilicity during saliva interaction. In conclusion, saliva contamination might impair important properties of hydrophilic nanotubular surfaces when not stored in wet conditions, suggesting the need of saliva-controlled sites for oral application of hydrophilic surfaces and/or the use of modified-package methods associated with their wet storage.

摘要

牙科植入物的亲水性和纳米纹理表面已被报道为早期骨整合的相关特性。然而,这些表面特征对口腔相互作用相当敏感。因此,本初步研究旨在调查早期人类唾液相互作用后亲水性纳米管表面所引起的表面变化。使用阳极氧化方案处理钛盘,随后进行反应性等离子体处理以实现纳米形貌和亲水性;此外,将表面保存在正常大气氧气中或进行湿处理。随后,使样品与唾液相互作用10分钟,并分析其物理化学性质和细胞活力。唾液相互作用对形态特征、粗糙度测量和化学成分没有显示出任何显著影响;然而,当样品保存在普通空气中时,亲水性在统计学上发生了变化,损害了这一特性。用前成骨细胞系(MC3T3-E1)测试的细胞活力在唾液污染后未进行湿储存的样品上48小时时显著降低。所应用的湿储存方法似乎在唾液相互作用期间有效地维持了诸如亲水性等特性。总之,当不进行湿储存时,唾液污染可能会损害亲水性纳米管表面的重要特性,这表明在口腔应用亲水性表面时需要唾液控制的部位和/或使用与其湿储存相关的改良包装方法。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d4df/9370139/6d322804739c/nanomaterials-12-02603-g001.jpg

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