评估变异链球菌在 3D 打印、研磨和传统丙烯酸树脂材料上的定植情况:体外研究

Pediatric dentistry Pub Date : 2024-03-15
Urva Suryawala, Jung-Wei Chen, Zhe Zhong, Mathew Kattadiyil, Roberto Savignano
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摘要

目的:比较三维打印(3DP)、研磨(M)和传统(CV)丙烯酸树脂的表面粗糙度和变异链球菌的细菌定植情况。方法:用 3DP、M 和 CV 材料制作 36 个圆盘(每组 12 个)。样品的一个表面抛光(Po),另一个表面未抛光(UPo)。使用接触式轮廓仪评估表面粗糙度(μm)。将样本放入变异杆菌悬浮液中,在 37 摄氏度下培养过夜。用超声波分离器分离附着的菌落,将所得溶液稀释至 10-3,48 小时后评估每毫升菌落形成单位(CFU/ml)。菌落被归类为变异杆菌定量指数(QS)。数据分析采用单因素方差分析、卡方差分析和多变量方差分析,并进行最小显著性差异(LSD)事后检验(PResults:对于 UPo 表面,CV 的粗糙度平均值 (Ra) 高于 3DP 和 M(结论:数字化制造的材料更平滑:数字化制造的材料比传统组的表面更光滑,从而减少了变异链球菌菌落的数量。不过,无论采用哪种制造方法,所有材料组都必须充分抛光,以防止变异链球菌的定植,因为随着表面粗糙度值的增加,变异链球菌的数量也会增加。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluating Streptococcus mutans Colonization on 3D-Printed, Milled, and Conventional Acrylic Resin Materials: An In Vitro Study.

Purpose: To compare surface roughness and bacterial colonization of Streptococcus mutans to 3D printed (3DP), milled (M), and conventional (CV) acrylic resin. Methods: Thirty-six discs (n equals 12 per group) were fabricated from 3DP, M, and CV materials. One surface of sample was polished (Po); the opposite surface was left unpolished (UPo). Surface roughness (μm) was assessed using a contact profilometer. The specimens were placed in S. mutans suspension and incubated at 37 degrees Celsius overnight. The attached colonies were separated using a sonicator, and the resulting solution was diluted to 10-3 to assess colony-forming units per milliliter (CFU/ml) after 48 hours. The colonies were categorized into a quantitative S. mutans (QS) index. Data were analyzed using one-way ANOVA, chi-squares, and multivariate analysis of variance analysis with the least significant difference (LSD) post-hoc test (P<0.05). Results: Roughness average (Ra) values of CV were higher than 3DP and M for UPo surfaces (P<0.001; 3DP=0.10; M=0.13; CV=0.26 μm, respectively). For Po and UPo surfaces, the CV harbored more S. mutans colonies than M and 3DP (P<0.001; 3DP=5.2x10 6 ; M=4.7x10 6 ; CV=1.49x10 7 CFU/ml, respectively). M group had the lowest range of QS scores, while CV had the highest range (P<0.001). Conclusions: Digitally manufactured material provides smoother surfaces than the conventional group, resulting in fewer Streptococcus mutans colonies. However, all the material groups must still be adequately polished to prevent the colonization of S. mutans, regardless of the manufacturing methods, as higher S. mutans counts were observed with an increase in surface roughness values.

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