Gallium-doped zirconia coatings modulate microbiological outcomes in dental implant surfaces

IF 3.9 3区 医学 Q2 ENGINEERING, BIOMEDICAL
Agnese D'Agostino, Giulia Misiti, Alessandro Calogero Scalia, Matteo Pavarini, Andrea Fiorati, Andrea Cochis, Lia Rimondini, Vittoria Federica Borrini, Marcello Manfredi, Luca Andena, Luigi De Nardo, Roberto Chiesa
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Abstract

Despite the significant recent advances in manufacturing materials supporting advanced dental therapies, peri-implantitis still represents a severe complication in dental implantology. Herein, a sol–gel process is proposed to easily deposit antibacterial zirconia coatings onto bulk zirconia, material, which is becoming very popular for the manufacturing of abutments. The coatings' physicochemical properties were analyzed through x-ray diffraction and scanning electron microscopy-energy-dispersive x-ray spectroscopy investigations, while their stability and wettability were assessed by microscratch testing and static contact angle measurements. Uniform gallium-doped tetragonal zirconia coatings were obtained, featuring optimal mechanical stability and a hydrophilic behavior. The biological investigations pointed out that gallium-doped zirconia coatings: (i) displayed full cytocompatibility toward human gingival fibroblasts; (ii) exhibited significant antimicrobial activity against the Aggregatibacter actinomycetemcomitans pathogen; (iii) were able to preserve the commensal Streptococcus salivarius. Furthermore, the proteomic analyses revealed that the presence of Ga did not impair the normal oral microbiota. Still, interestingly, it decreased by 17% the presence of Fusobacterium nucleatum, a gram-negative, strictly anaerobic bacteria that is naturally present in the gastrointestinal tract. Therefore, this work can provide a valuable starting point for the development of coatings aimed at easily improving zirconia dental implants' performance.

Abstract Image

掺镓氧化锆涂层可调节牙科种植体表面的微生物结果。
尽管近年来支持先进牙科疗法的制造材料取得了重大进展,但种植体周围炎仍然是牙科种植中的一个严重并发症。本文提出了一种溶胶-凝胶工艺,可以轻松地将抗菌氧化锆涂层沉积到大块氧化锆材料上,这种材料在基台制造中越来越受欢迎。通过 X 射线衍射和扫描电子显微镜-能量色散 X 射线光谱研究分析了涂层的物理化学特性,并通过显微划痕测试和静态接触角测量评估了涂层的稳定性和润湿性。结果表明,掺镓四方氧化锆涂层具有最佳的机械稳定性和亲水性。生物学研究表明,掺镓氧化锆涂层:(i) 对人类牙龈成纤维细胞显示出完全的细胞相容性;(ii) 对放线菌(Aggregatibacter actinomycetemcomitans)病原体显示出显著的抗菌活性;(iii) 能够保护唾液链球菌(Streptococcus salivarius)。此外,蛋白质组分析表明,Ga 的存在并没有损害正常的口腔微生物群。但有趣的是,它使核酸镰刀菌的数量减少了 17%,而核酸镰刀菌是一种革兰氏阴性、严格厌氧的细菌,天然存在于胃肠道中。因此,这项工作可以为开发涂层提供一个宝贵的起点,从而轻松改善氧化锆牙科植入物的性能。
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来源期刊
Journal of biomedical materials research. Part A
Journal of biomedical materials research. Part A 工程技术-材料科学:生物材料
CiteScore
10.40
自引率
2.00%
发文量
135
审稿时长
3.6 months
期刊介绍: The Journal of Biomedical Materials Research Part A is an international, interdisciplinary, English-language publication of original contributions concerning studies of the preparation, performance, and evaluation of biomaterials; the chemical, physical, toxicological, and mechanical behavior of materials in physiological environments; and the response of blood and tissues to biomaterials. The Journal publishes peer-reviewed articles on all relevant biomaterial topics including the science and technology of alloys,polymers, ceramics, and reprocessed animal and human tissues in surgery,dentistry, artificial organs, and other medical devices. The Journal also publishes articles in interdisciplinary areas such as tissue engineering and controlled release technology where biomaterials play a significant role in the performance of the medical device. The Journal of Biomedical Materials Research is the official journal of the Society for Biomaterials (USA), the Japanese Society for Biomaterials, the Australasian Society for Biomaterials, and the Korean Society for Biomaterials. Articles are welcomed from all scientists. Membership in the Society for Biomaterials is not a prerequisite for submission.
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