APPLICATION OF ANTIMICROBIAL NANOPARTICLES OF METALS AND THEIR OXIDES IN IMPROVING DENTAL PROSTHESES

L.O. Lugova, O.V. Dobrobolska, O.V. Dobrovolskyi, E.M. Vazhnichaya, N. O. Bobrova
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Abstract

Many nanoparticles of metals and their oxides, including silver, titanium, zinc, copper, zirconium, have antimicrobial properties. These nanoparticles are a promising strategy for the treatment and prevention of oral cavity infections and can be used in various fields of dentistry. The purpose of the work is to present a literature review on the application of applying antimicrobial nanoparticle of metals and their oxides in orthopedic dentistry, in particular, in the improvement of materials for the prosthetics of dentition defects. Literature sources were searched in the PubMed database. Articles for the years 2013–2023 were selected for their involvement in orthodontic dentistry and for the availability of microbiological test data. Recent trends indicate a shift towards enhancing the composition of fundamental materials used in dental prostheses. To mitigate infectious complications, a modification of the base plastic by incorporating nanoparticles with antimicrobial properties is proposed. Silver nanoparticles are widely utilized to modify denture materials and, when combined with polymers or applied as a surface coating on biomaterials, exhibit antimicrobial properties against oral pathogens, along with an anti-biofilm effect. Zinc oxide nanoparticles, recognized for their biocompatibility and non-toxic nature, possess significant biocidal properties effective against a broad spectrum of bacteria and fungi. They demonstrate the ability to inhibit biofilm formation by oral cavity microorganisms, not only on acrylic prostheses but also on surfaces like glass, polystyrene, and silicone. Titanium oxide nanoparticles contribute to reducing microorganism adhesion on various prosthetic materials, including acrylic resins, ceramic glass, and stainless steel. Zirconium oxide nanoparticles, distinct from other metal oxide counterparts, do not compromise the aesthetics of dentures. Simultaneously, they enhance density and reduce polymethylmethacrylate porosity, thereby decreasing candida adhesion and proliferation in the samples. Copper oxide nanoparticles exhibit dose-dependent inhibition of C. albicans and Streptococcus spp. growth, along with biofilm formation, and show cytotoxic effects only at high concentrations. Thus, there are metal and metal oxide nanoparticles that can improve the antimicrobial properties of prosthetic materials for orthopedic dentistry and thus ensure the prevention of infectious complications when using dental prostheses, but for their clinical use, the gap between experiment and practice has yet to be bridged.
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金属及其氧化物纳米抗菌颗粒在改善牙科修复体中的应用
包括银、钛、锌、铜、锆在内的许多金属及其氧化物纳米粒子都具有抗菌特性。这些纳米粒子是治疗和预防口腔感染的一种有前途的策略,可用于牙科的各个领域。这项工作的目的是就金属及其氧化物的抗菌纳米粒子在牙科整形中的应用,特别是在改进牙列缺损修复材料方面的应用进行文献综述。文献来源在 PubMed 数据库中搜索。选取了 2013-2023 年间的文章,以了解这些文章是否涉及牙齿矫正,以及是否提供了微生物测试数据。最近的趋势表明,义齿修复中使用的基本材料的成分正在发生变化。为了减轻感染性并发症,有人提出通过加入具有抗菌特性的纳米粒子来改良基础塑料。银纳米粒子被广泛用于义齿材料的改性,当与聚合物结合或作为生物材料的表面涂层时,银纳米粒子对口腔病原体具有抗菌特性,同时还具有抗生物膜效应。氧化锌纳米粒子因其生物相容性和无毒性而得到公认,具有显著的杀菌特性,可有效抑制多种细菌和真菌。它们能抑制口腔微生物形成生物膜,不仅能抑制丙烯酸修复体上的生物膜,还能抑制玻璃、聚苯乙烯和硅胶等表面上的生物膜。纳米氧化钛有助于减少微生物在各种假体材料(包括丙烯酸树脂、陶瓷玻璃和不锈钢)上的附着力。纳米氧化锆与其他金属氧化物不同,不会影响假牙的美观。同时,它们还能提高密度并降低聚甲基丙烯酸甲酯的孔隙率,从而减少样品中念珠菌的粘附和增殖。纳米氧化铜颗粒对白念珠菌和链球菌的生长以及生物膜的形成具有剂量依赖性抑制作用,只有在高浓度时才会显示出细胞毒性效应。因此,有些金属和金属氧化物纳米粒子可以改善牙科整形修复材料的抗菌性能,从而确保在使用牙科修复体时预防感染并发症,但在临床应用方面,实验与实践之间的差距仍有待弥合。
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