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Transparent magnesium aluminate spinel: a prospective biomaterial for esthetic orthodontic brackets

机译:透明的铝酸镁尖晶石:美观的正畸托槽的潜在生物材料

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摘要

Adult orthodontics is recently gaining popularity due to its importance in esthetics, oral and general health. However, none of the currently available alumina or zirconia based ceramic orthodontic brackets meet the esthetic demands of adult patients. Inherent hexagonal lattice structure and associated birefringence limits the visible light transmission in polycrystalline alumina and make them appear white and non transparent. Hence focus of the present study was to assess the feasibility of using magnesium aluminate (MgAl_2O_4) spinel; a member of the transparent ceramic family for esthetic orthodontic brackets. Transparent spinel specimens were developed from commercially available white spinel powder through colloidal shaping followed by pressureless sintering and hot isostatic pressing at optimum conditions of temperature and pressure. Samples were characterized for chemical composition, phases,density, hardness, flexural strength, fracture toughness and optical transmission. Biocompatibility was evaluated with in-vitro cell line experiments for cytotoxicity, apoptosis and genotoxicity. Results showed that transparent spinel samples had requisite physico-chemical, mechanical, optical and excellent biocompatibility for fabricating orthodontic brackets. Transparent spinel developed through this method demonstrated its possibility as a prospective biomaterial for developing esthetic orthodontic brackets.
机译:由于成人正畸在美容,口腔和一般健康方面的重要性,最近正逐渐受到人们的欢迎。然而,当前可用的基于氧化铝或氧化锆的陶瓷正畸托槽均不能满足成人患者的审美需求。固有的六边形晶格结构和相关的双折射限制了多晶氧化铝中的可见光透射,并使它们显得白色且不透明。因此,本研究的重点是评估使用铝酸镁(MgAl_2O_4)尖晶石的可行性。透明陶瓷系列的成员,用于美观的正畸托槽。透明的尖晶石样品是由商购的白色尖晶石粉末通过胶体成型,随后在无压烧结和热等静压的最佳温度和压力条件下制成的。表征样品的化学组成,相,密度,硬度,弯曲强度,断裂韧性和透光率。通过体外细胞系实验评估了细胞相容性,凋亡和遗传毒性的生物相容性。结果表明,透明尖晶石样品具有制造正畸托槽所必需的物理化学,机械,光学和出色的生物相容性。通过这种方法开发的透明尖晶石展示了其作为开发美观正畸托槽的潜在生物材料的可能性。

著录项

  • 来源
    《Journal of materials science》 |2014年第11期|2591-2599|共9页
  • 作者单位

    Department of Dental Research & Implantology, Institute of Nuclear Medicine and Allied Sciences (INMAS), Defence Research and Development Organization (DRDO), Timarpur, Delhi 110054, India;

    Department of Dental Research & Implantology, Institute of Nuclear Medicine and Allied Sciences (INMAS), Defence Research and Development Organization (DRDO), Timarpur, Delhi 110054, India;

    Base Hospital, School of Medicine & Paramedical Health Sciences, Guru Gobind Singh Indraprastha University, Delhi 110010, India;

    Division of Radiation Biosciences, Institute of Nuclear Medicine and Allied Sciences (INMAS), Defence Research and Development Organization (DRDO), Timarpur, Delhi 110054, India;

    Centre for Ceramic Processing, International Advanced Research Centre for Powder Metallurgy & New Materials (ARCI), Hyderabad 500005, India;

    Centre for Ceramic Processing, International Advanced Research Centre for Powder Metallurgy & New Materials (ARCI), Hyderabad 500005, India;

    Centre for Ceramic Processing, International Advanced Research Centre for Powder Metallurgy & New Materials (ARCI), Hyderabad 500005, India;

    Centre for Ceramic Processing, International Advanced Research Centre for Powder Metallurgy & New Materials (ARCI), Hyderabad 500005, India;

    Naval Material Research Laboratory (NMRL), Defence Research and Development Organization (DRDO), Ambernath, Mumbai, India;

    Army Dental Centre (Research and Referral), Delhi 110010,India;

    Department of Orthodontics, Army Dental Centre (Research and Referral), Delhi 110010, India;

    Army Dental Centre (Research and Referral), Delhi 110010,India;

    Institute of Nuclear Medicine and Allied Sciences (INMAS),Defence Research and Development Organization (DRDO),Timarpur, Delhi 110054, India;

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  • 入库时间 2022-08-17 13:37:29

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