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具有蛋白质吸附生物活性并结合裂纹修复能力的牙科复合材料配方设计

Dental Composite Formulation Design with Bioactivity on Protein Adsorption Combined with Crack-Healing Capability.

作者信息

Chen Chen, Wu Junling, Weir Michael D, Wang Lin, Zhou Xuedong, Xu Hockin H K, Melo Mary Anne S

机构信息

State Key Laboratory of Oral Diseases, West China Hospital of Stomatology, Sichuan University, Chengdu 610041, China.

Department of Prosthodontics, Endodontics and Operative Dentistry, University of Maryland School of Dentistry, Baltimore, MD 21201, USA.

出版信息

J Funct Biomater. 2017 Sep 7;8(3):40. doi: 10.3390/jfb8030040.

Abstract

Fracture and secondary caries are the primary reasons for the failure of dental restorations. To face this omnipresent problem, we report the formulation design and synthesis of a protein-resistant dental composite composed of 2-methacryloyloxyethyl phosphorylcholine (MPC) that also can self-repair damage and recover the load-bearing capability via microencapsulated triethylene glycol dimethacrylate (TEGDMA) and ,-dihydroxy ethyl--toluidine (DHEPT). The bioactivity of the resulting MPC-microencapsulated TEGDMA-DHEPT was evaluated on protein adsorption through early bacterial attachment. Its mechanical properties were also investigated, including self-healing assessment. Microcapsules of poly (urea-formaldehyde) (PUF) were synthesized by incorporating a TEGDMA-DHEPT healing liquid. A set of composites that contained 7.5% of MPC, 10% of microcapsules, and without MPC/microcapsules were also prepared as controls. The two distinct characteristics of strong protein repellency and load-bearing recovery were achieved by the combined strategies. The novel dual composite with a combination of protein-repellent MPC and PUF microcapsules for restoring microcracks is a promising strategy for dental restorations to address the two main challenges of fracture and secondary caries. The new dual composite formulation design has the potential to improve the longevity of dental restorations significantly.

摘要

骨折和继发龋是牙科修复失败的主要原因。为应对这一普遍存在的问题,我们报告了一种抗蛋白质牙科复合材料的配方设计与合成,该材料由2-甲基丙烯酰氧基乙基磷酰胆碱(MPC)组成,还可通过微囊化的三乙二醇二甲基丙烯酸酯(TEGDMA)和N,N-二羟乙基对甲苯胺(DHEPT)自我修复损伤并恢复承载能力。通过早期细菌附着对所得MPC-微囊化TEGDMA-DHEPT的生物活性进行了蛋白质吸附评估。还研究了其机械性能,包括自我修复评估。通过加入TEGDMA-DHEPT愈合液合成了聚(脲-甲醛)(PUF)微胶囊。还制备了一组含有7.5%MPC、10%微胶囊以及不含MPC/微胶囊的复合材料作为对照。通过联合策略实现了强抗蛋白质性和承载能力恢复这两个独特特性。具有抗蛋白质MPC和PUF微胶囊组合以修复微裂纹的新型双复合材料,是牙科修复应对骨折和继发龋这两个主要挑战的一种有前景的策略。这种新型双复合材料配方设计有可能显著提高牙科修复体的使用寿命。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/86f8/5618291/7c45ddec5b03/jfb-08-00040-g001.jpg

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