Department of Cariology, Restorative Sciences, and Endodontics, University of Michigan School of Dentistry, Ann Arbor, MI, 48109, USA.
Department of Restorative Dentistry, School of Dentistry, Federal University of Pelotas, Pelotas, RS, Brazil.
Clin Oral Investig. 2023 Jul;27(7):3447-3456. doi: 10.1007/s00784-023-04952-0. Epub 2023 Mar 22.
To evaluate the incorporation of halloysite nanotubes (HNTs) loaded with one of two calcium sources (i.e., calcium hydroxide/CaOH or beta-tricalcium phosphate/β-TCP) on the physicochemical and biological properties of an experimental resin-based dual-cured endodontic sealer.
HNTs were encapsulated with CaOH or β-TCP at 10 wt.%. HNTs containing CaOH or β-TCP were added into the experimental sealers at 50 wt.%. The control sealers were the calcium-free HNT-modified resin-based experimental sealer and AH Plus™, a commercially available endodontic sealer. Degree of conversion, setting time, flow, film thickness, radiopacity, dimensional stability, and calcium ions release were determined. Antibiofilm properties and cytocompatibility of the formulated sealers and commercial control were also evaluated. One and two-way ANOVA analysis followed by Tukey's post hoc test was conducted to evaluate the effect of the independent variable on the evaluated properties.
FTIR confirmed the encapsulation of calcium sources into HNTs. Regarding flow and film thickness, the values obtained from these sealers were in accordance with the specifications provided by ISO 6876. For radiopacity, AH Plus™ achieved the highest radiopacity (p<0.05). Among the experimental formulations, all experimental HNT-containing compositions exhibited values below 3 mm Al. The experimental sealers showed greater dimensional changes when compared to the commercial (AH Plus™) control. The release of calcium ions was observed for the HNT_CaOH and HNT_β-TCP sealers without statistical differences. Experimental sealers containing HNT_CaOH and HNT_β-TCP significantly reduced the CFU/mL count and showed cell compatibility.
The findings of this study demonstrate that the incorporation of HNT_CaOH or HNT_β-TCP into resin-based experimental sealers promoted antimicrobial effects and gradual calcium release without impairing cytocompatibility or physicochemical properties of the sealers. Still, an adjustment to reach the minimal radiopacity established by ISO 6876 is needed.
The experimental resin-based sealers seemed to be an alternative for endodontics. The incorporation of calcium sources exerts promising antimicrobial effects while displaying low cell toxicity.
评估负载两种钙源(即氢氧化钙/ CaOH 或β-磷酸三钙/β-TCP)之一的海泡石纳米管(HNTs)对实验性树脂双固化根管封闭剂的理化和生物学性能的影响。
将 HNTs 用 10wt%的 CaOH 或β-TCP 进行包封。将含有 CaOH 或β-TCP 的 HNTs 加入实验性封闭剂中,重量百分比为 50wt%。对照组为不含钙的 HNT 改性树脂基实验性封闭剂和 AH Plus™,一种市售的根管封闭剂。测定转化率、凝固时间、流动度、膜厚、射线不透性、尺寸稳定性和钙离子释放。还评估了配方封闭剂和商业对照物的抗生物膜性能和细胞相容性。采用单因素和双因素方差分析(ANOVA),然后进行 Tukey 事后检验,评估独立变量对评估性能的影响。
FTIR 证实了钙源被包封到 HNTs 中。关于流动度和膜厚度,这些封闭剂的测量值符合 ISO 6876 规定的标准。在射线不透性方面,AH Plus™达到最高的射线不透性(p<0.05)。在实验配方中,所有含有实验性 HNT 的制剂的射线不透性均低于 3mm Al。与商业对照物(AH Plus™)相比,实验性封闭剂的尺寸变化更大。HNT_CaOH 和 HNT_β-TCP 封闭剂释放钙离子,但无统计学差异。含有 HNT_CaOH 和 HNT_β-TCP 的实验性封闭剂显著降低 CFU/mL 计数,并显示出细胞相容性。
本研究结果表明,将 HNT_CaOH 或 HNT_β-TCP 掺入树脂基实验性封闭剂中可促进抗菌作用和钙的逐渐释放,而不会损害封闭剂的细胞相容性或理化性能。尽管如此,仍需要进行调整以达到 ISO 6876 规定的最小射线不透性标准。
实验性树脂基封闭剂似乎是牙髓学的一种替代选择。钙源的掺入可发挥有前途的抗菌作用,同时显示出低细胞毒性。