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载二水磷酸氢钙壳聚糖填料的新型牙科修复复合材料的研制。

Development of novel dental restorative composites with dibasic calcium phosphate loaded chitosan fillers.

机构信息

School of Mechanical and Manufacturing Engineering, UNSW Sydney, Sydney, NSW 2052, Australia.

Universidade Ibirapuera, São Paulo, Brazil.

出版信息

Dent Mater. 2020 Apr;36(4):551-559. doi: 10.1016/j.dental.2020.02.004. Epub 2020 Feb 20.

Abstract

UNLABELLED

The incorporation of antimicrobial agents in restorative dental composites has the potential to slow the development of carious lesions.

OBJECTIVE

The objectives of the present study were to develop experimental composite resins with chitosan or chitosan loaded with dibasic calcium phosphate anhydrous (DCPA) particles and to demonstrate their antimicrobial potential without loss of mechanical properties or biocompatibility.

METHODS

Chitosan and chitosan/DCPA particles were synthetized by the electrospray method. Experimental composites were formulated by adding 0, 0.5, or 1.0 wt% particles into a resin matrix along with 60 wt% barium glass. The degree of conversion and mechanical properties were measured after 1 and 90 days of aging in water after photoactivation. Cytotoxicity and genotoxicity were evaluated using fibroblasts from dental pulp in conditioned medium. The antimicrobial activity against Streptococcus mutans was assessed by crystal violet biofilm assay.

RESULTS

The experimental restorative composites were not found to be cytotoxic or genotoxic, with cell viability of 93.1 ± 8.0% (p = 0.328) and 3.0 ± 0.8% micronucleus per group (p = 0.1078), respectively. The antimicrobial results showed that all composites with approximately 20% less biofilm (p < 0.001) relative to the control. No chitosan release was detected from the composites, suggesting direct contact of the bacteria with exposed chitosan particles on the surface was responsible for the observed antimicrobial effect. The addition of the chitosan and chitosan/DCPA submicrometer (<250 nm average diameter) particles to restorative composites did not change the degree of conversion, flexural strength, elastic modulus and fracture toughness compared to the control group after 90 days aging in water.

SIGNIFICANCE

It can be concluded that the addition of chitosan or chitosan/DCPA particles in the restorative composites induced antimicrobial activity without compromising the mechanical properties or biocompatibility of the composites.

摘要

未加标签

将抗菌剂掺入修复性牙科复合材料中有可能减缓龋齿的发展。

目的

本研究的目的是开发具有壳聚糖或负载无水磷酸二钙(DCPA)颗粒的壳聚糖的实验性复合树脂,并证明其具有抗菌潜力,同时不损失机械性能或生物相容性。

方法

通过电喷雾法合成壳聚糖和壳聚糖/DCPA 颗粒。通过在树脂基质中添加 0、0.5 或 1.0wt%的颗粒并加入 60wt%的钡玻璃,制备实验性复合材料。在水老化 1 和 90 天后,通过光激活测量转化率和机械性能。使用牙髓成纤维细胞在条件培养基中评估细胞毒性和遗传毒性。通过结晶紫生物膜测定评估对变形链球菌的抗菌活性。

结果

实验性修复复合材料未被发现具有细胞毒性或遗传毒性,细胞活力为 93.1±8.0%(p=0.328)和每组 3.0±0.8%微核(p=0.1078)。抗菌结果表明,所有复合材料的生物膜量减少了约 20%(p<0.001),与对照组相比。从复合材料中未检测到壳聚糖释放,表明观察到的抗菌效果是由于暴露在表面上的壳聚糖颗粒与细菌直接接触所致。与对照组相比,在水老化 90 天后,将壳聚糖和壳聚糖/DCPA 亚微米(<250nm 平均直径)颗粒添加到修复性复合材料中不会改变转化率、弯曲强度、弹性模量和断裂韧性。

意义

可以得出结论,在修复性复合材料中添加壳聚糖或壳聚糖/DCPA 颗粒会诱导抗菌活性,同时不损害复合材料的机械性能或生物相容性。

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