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Novel dental adhesives containing nanoparticles of silver and amorphous calcium phosphate

机译:包含银和无定形磷酸钙纳米粒子的新型牙科粘合剂

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摘要

Objectives. Secondary caries is the main reason for restoration failure, and replacement of the failed restorations accounts for 50-70% of all restorations. Antibacterial adhesives could inhibit residual bacteria in tooth cavity and invading bacteria along the margins. Calcium (Ca) and phosphate (P) ion release could remineralize the lesions. The objectives of this study were to incorporate nanoparticles of silver (NAg) and nanoparticles of amorphous calcium phosphate (NACP) into adhesive for the first time, and to investigate the effects on dentin bond strength and plaque microcosm biofilms. Methods. Scotchbond multi-purpose adhesive was used as control. NAg were added into primer and adhesive at 0.1% by mass. NACP were mixed into adhesive at 10%, 20%, 30% and 40%. Microcosm biofilms were grown on disks with primer covering the adhesive on a composite. Biofilm metabolic activity, colony-forming units (CFU) and lactic acid were measured. Results. Human dentin shear bond strengths (n = 10) ranged from 26 to 34MPa; adding NAg and NACP into adhesive did not decrease the bond strength (p>0.1). SEM examination revealed resin tags from well-filled dentinal tubules. Numerous NACP infiltrated into the dentinal tubules. While NACP had little antibacterial effect, NAg in bonding agents greatly reduced the biofilm viability and metabolic activity, compared to the control (p < 0.05). CFU for total microorganisms, total streptococci, and mutans streptococci on bonding agents with NAg were an order of magnitude less than those of the control. Lactic acid production by biofilms for groups containing NAg was 1/4 of that of the control. Significance. Dental plaque microcosm biofilm viability and acid production were greatly reduced on bonding agents containing NAg and NACP, without compromising dentin bond strength. The novel method of incorporating dual agents (remineralizing agent NACP and antibacterial agent NAg) may have wide applicability to other dental bonding systems.
机译:目标。次生龋齿是修复失败的主要原因,更换失败的修复占所有修复的50-70%。抗菌粘合剂可以抑制牙腔中残留的细菌和沿边缘侵入的细菌。钙(Ca)和磷酸盐(P)的释放可以使矿物质再矿化。这项研究的目的是第一次将银(NAg)的纳米颗粒和无定形磷酸钙(NACP)的纳米颗粒掺入粘合剂中,并研究其对牙本质粘合强度和牙菌斑生物膜的影响。方法。使用Scotchbond多功能粘合剂作为对照。将NAg以0.1质量%添加到底漆和粘合剂中。将NACP以10%,20%,30%和40%混合到粘合剂中。缩微生物膜在圆盘上生长,底漆覆盖复合材料上的粘合剂。测量了生物膜的代谢活性,菌落形成单位(CFU)和乳酸。结果。人牙本质的剪切粘结强度(n = 10)范围从26到34MPa。向粘合剂中添加NAg和NACP不会降低粘合强度(p> 0.1)。 SEM检查发现牙本质小管充满了树脂标签。许多NACP渗入牙本质小管。尽管NACP几乎没有抗菌作用,但与对照组相比,粘合剂中的NAg大大降低了生物膜的活力和代谢活性(p <0.05)。具有NAg的结合剂上的总微生物,总链球菌和变形链球菌的CFU比对照值低一个数量级。对于包含NAg的基团,通过生物膜产生的乳酸为对照的1/4。意义。在不损害牙本质粘合强度的情况下,在含有NAg和NACP的粘合剂上,牙菌斑微观世界生物膜的生存能力和产酸量大大降低。掺入双重药剂(矿化剂NACP和抗菌剂NAg)的新方法可能对其他牙齿粘合系统具有广泛的适用性。

著录项

  • 来源
    《Dental materials》 |2013年第2期|199-210|共12页
  • 作者单位

    Biomaterials & Tissue Engineering Division, Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, MD 21201, USA,Faculty of Pharmacy, Dentistry and Nursing, Federal University of Ceara, Fortaleza, CE, Brazil;

    Biomaterials & Tissue Engineering Division, Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, MD 21201, USA,State Key Laboratory of Oral Diseases, West China College of Stomatology, Sichuan University, Chengdu, China;

    Biomaterials & Tissue Engineering Division, Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, MD 21201, USA,Department of Orthodontics, School of Stomatology, Capital Medical University, Beijing, China;

    Biomaterials & Tissue Engineering Division, Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, MD 21201, USA;

    Faculty of Pharmacy, Dentistry and Nursing, Federal University of Ceara, Fortaleza, CE, Brazil;

    Biomaterials & Tissue Engineering Division, Department of Endodontics, Prosthodontics and Operative Dentistry, University of Maryland Dental School, Baltimore, MD 21201, USA,Center for Stem Cell Biology & Regenerative Medicine, University of Maryland School of Medicine, Baltimore, MD 21201, USA,Marlene and Stewart Greenebaum Cancer Center, University of Maryland School of Medicine, Baltimore, MD 21201, USA,Department of Mechanical Engineering, University of Maryland, Baltimore County, Baltimore, MD 21250, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    antibacterial adhesive; dentin bond strength; silver nanoparticles; calcium phosphate nanoparticles; human saliva microcosm biofilm; caries inhibition;

    机译:抗菌胶牙本质粘合强度;银纳米颗粒;磷酸钙纳米颗粒;人唾液微观生物膜;龋齿抑制;
  • 入库时间 2022-08-18 03:47:02

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