首页> 外文期刊>Journal of biomedical materials research. Part B, Applied biomaterials. >Effect of amorphous calcium phosphate and silver nanocomposites on dental plaque microcosm biofilms.
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Effect of amorphous calcium phosphate and silver nanocomposites on dental plaque microcosm biofilms.

机译:无定形磷酸钙和银纳米复合材料对牙菌斑微观生物膜的影响。

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A dental composite containing amorphous calcium phosphate nanoparticles (NACP) was developed that released calcium (Ca) and phosphate (PO(4)) ions and possessed acid-neutralization capability. There has been little study on incorporation of antibacterial agents into calcium phosphate composites. The objective of this study was to investigate the effect of silver nanoparticle (NAg) mass fraction in NACP nanocomposite on mechanical properties and dental plaque microcosm biofilm for the first time. NACP nanoparticles of 116 nm were synthesized via a spray-drying technique. NAg nanoparticles were synthesized using Ag 2-ethylhexanoate and 2-(tert-butylamino)ethyl methacrylate, yielding NAg of particle size of 2.7 nm that were well-dispersed in the resin. Five NACP nanocomposites were fabricated with NAg mass fractions of 0, 0.028, 0.042, 0.088, and 0.175%, respectively. Mechanical properties of NACP nanocomposites containing 0-0.042% of NAg matched those of a commercial composite without antibacterial activity. Live/dead assay of dental plaque microcosm biofilms showed complete coverage with live bacteria on commercial composite. However, there were increasingly more dead bacteria with higher NAg content in the NACP nanocomposite. Colony-forming unit (CFU) counts for total microorganisms, total streptococci, and mutans streptococci for NACP nanocomposite with 0.042% NAg were about 1/4 those of commercial composite. Lactic acid production on NACP nanocomposite with 0.042% NAg was 1/3 that on commercial composite. In conclusion, novel NACP-NAg nanocomposites were developed which possessed good mechanical properties and potent antibacterial properties, with substantially reduced biofilm viability and lactic acid production. Hence, the NACP-NAg nanocomposites are promising for dental restorations with remineralizing and antibacterial capabilities.
机译:牙科复合材料包含无定形的磷酸钙纳米粒子(NACP)已开发,释放钙(Ca)和磷酸(PO(4))离子,并具有酸中和能力。关于将抗菌剂掺入磷酸钙复合材料的研究很少。这项研究的目的是第一次研究NACP纳米复合材料中银纳米颗粒(NAg)的质量分数对机械性能和牙菌斑微观生物膜的影响。通过喷雾干燥技术合成了116nm的NACP纳米颗粒。使用2-乙基己酸酯银和甲基丙烯酸2-(叔丁基氨基)乙酯合成NAg纳米颗粒,得到颗粒大小为2.7 nm的NAg,该颗粒分散在树脂中。制备了5种NAg纳米复合材料,其NAg质量分数分别为0、0.028、0.042、0.088和0.175%。包含0-0.042%NAg的NACP纳米复合材料的机械性能与没有抗菌活性的商用复合材料的机械性能相匹配。牙菌斑微观生物膜的活/死分析表明,在商用复合材料上,活细菌已完全覆盖。但是,NACP纳米复合材料中越来越多的死细菌具有更高的NAg含量。具有0.042%NAg的NACP纳米复合材料的总微生物,总链球菌和变形链球菌的菌落形成单位(CFU)计数约为商业复合材料的1/4。具有0.042%NAg的NACP纳米复合材料上的乳酸产量是商业复合材料上的1/3。总之,已开发出具有良好的机械性能和有效的抗菌性能,同时大大降低了生物膜活力和乳酸生成的新型NACP-NAg纳米复合材料。因此,NACP-NAg纳米复合材料有望实现具有矿化和抗菌功能的牙齿修复。

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