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钛合金的增材制造可改变致病微生物谱:一项体外研究。

Additive manufacturing of titanium alloy could modify the pathogenic microbial profile: an in vitro study.

作者信息

Pingueiro João, Piattelli Adriano, Paiva Juliana, Figueiredo Luciene Cristina de, Feres Magda, Shibli Jamil, Bueno-Silva Bruno

机构信息

Guarulhos University - UnG, Dental Research Division, Department of Periodontology and Oral Implantology, Guarulhos, SP, Brazil.

Università G. d' Annunzio Chieti-Pescara, Chieti, Italy.

出版信息

Braz Oral Res. 2019 Sep 30;33(suppl 1):e065. doi: 10.1590/1807-3107bor-2019.vol33.0065. eCollection 2019.

Abstract

Additive manufacturing (AM) is an emerging process for biomaterials and medical devices. Direct Laser Metal Sintering (DLMS) is an AM technique used to fabricate Ti-6Al-4V implant materials with enhanced surface-related properties compared with wrought samples; thus, this technique could influence microbial adsorption and colonization. Therefore, this in vitro study was conducted to evaluate the impact of different implant production processes on microbial adhesion of periodontal pathogens. Titanium discs produced using two different processes-conventional and AM-were divided into three groups: conventional titanium discs with machined surface (G1), AM titanium discs with chemical treatment (G2) and AM titanium discs without chemical treatment (G3). Subgingival biofilm composed of 32 species was formed on the titanium discs, and positioned vertically in 96-well plates, for 7 days. The proportions of microbial complexes and the microbial profiles were analyzed using a DNA-DNA hybridization technique, and data were evaluated using Kruskal-Wallis and Dunnett tests (p < 0.05). Lower proportions of the red complex species were observed in the biofilm formed in G2 compared with that in G1 (p < 0.05). Moreover, the proportions of the microbial complexes were similar between G2 and G3 (p > 0.05). Compared with G1, G2 showed reduced levels of Porphyromonas gingvalis , Actinomyces gerencseriae, and Streptococcus intermedius , and increased levels of Parvimonas micra , Actinomyces odontolyticus, and Eikenella corrodens (p < 0.05). The microbial profile of G3 did not differ from G1 and G2 (p > 0.05). The results of this in vitro study showed that titanium discs produced via AM could alter the microbial profile of the biofilm formed around them. Further clinical studies should be conducted to confirm these findings.

摘要

增材制造(AM)是一种用于生物材料和医疗器械的新兴工艺。直接激光金属烧结(DLMS)是一种增材制造技术,用于制造与锻造样品相比具有增强的表面相关性能的Ti-6Al-4V植入材料;因此,该技术可能会影响微生物的吸附和定植。因此,本体外研究旨在评估不同植入物生产工艺对牙周病原体微生物粘附的影响。使用两种不同工艺(传统工艺和增材制造工艺)生产的钛盘分为三组:具有机加工表面的传统钛盘(G1)、经过化学处理的增材制造钛盘(G2)和未经化学处理的增材制造钛盘(G3)。由32种细菌组成的龈下生物膜在钛盘上形成,并垂直放置在96孔板中,持续7天。使用DNA-DNA杂交技术分析微生物复合物的比例和微生物谱,并使用Kruskal-Wallis和Dunnett检验评估数据(p<0.05)。与G1相比,在G2中形成的生物膜中观察到红色复合物物种的比例较低(p<0.05)。此外,G2和G3之间的微生物复合物比例相似(p>0.05)。与G1相比,G2中牙龈卟啉单胞菌、杰氏放线菌和中间链球菌的水平降低,而微小单胞菌、溶牙放线菌和腐蚀艾肯菌的水平升高(p<0.05)。G3的微生物谱与G1和G2没有差异(p>0.05)。本体外研究结果表明,通过增材制造生产的钛盘可能会改变其周围形成的生物膜的微生物谱。应进行进一步的临床研究以证实这些发现。

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