课题基金 / 基金详情

Novel Amino Acid-Based Glass-Ionomer Biomaterials

Novel Amino Acid-Based Glass-Ionomer Biomaterials
新型氨基酸基玻璃离聚物生物材料
批准号:
6933919
负责人:
DONG XIE
金额:
$28.97万
依托单位国家:
美国
项目类别:
财政年份:
2003
资助国家:
美国
项目状态:
已结题
起止时间:
2003-09-19 至 2007-08-31

项目摘要

项目成果

DONG XIE的其他基金

相关文献

中文摘要
翻译
描述(由申请人提供):众所周知,树脂改性玻璃离子水门汀(RMGIC)是一种有吸引力的牙科修复剂,因为它具有增强的机械强度、粘合和处理性能。然而,这种水泥的缺点是它含有大量的甲基丙烯酸2-羟乙酯(HEMA)。由于未反应的HEMA对牙髓和周围组织具有细胞毒性,因此消除HEMA可以使这种“智能”水泥对牙科和骨科应用更具吸引力。我们已经证明,新型氨基酸修饰且不含HEMA的RMGIC表现出显着改善的机械强度、粘附力和自蚀刻能力。本研究的目的是开发这些新型氨基酸基玻璃离聚物,用于牙科和骨科应用,以响应NIBIB的RFA,开发具有改善的生物和机械性能的新型生物材料。在这项研究中,廉价和生物稳定的氨基酸为基础的多元羧酸将被合成和配制与氨基酸衍生物,以形成一个创新的不含HEMA的RMGIC系统。实验设计(DOE)方法将应用于优化合成的聚(氨基酸)的摩尔比,分子量,接枝率,配方和填料含量。将评价新骨水泥的机械强度和其他物理性能。所提出的基于氨基酸的水泥将提供额外的盐桥,从而增强粘附力和机械强度。将进行体外直接细胞接触以及甲基噻唑基二苯基四唑(MTT)研究和体内骨反应,以确定新骨水泥的生物相容性和生物活性。牙科和骨科的新型替代品应该是这一基础研究的成果,以建立未来工业发展的商业生物材料。该项目目标的成功实现将对牙科修复和整形外科领域产生重大影响。该项目将在合成聚合物化学家,生物材料科学家,生物机械工程师和临床牙医之间建立一个大学范围的合作。该项目还将为生物医学工程专业的学生提供一个理想的培训环境,因为它将使他们能够通过与来自不同学科的合作者的密切互动,对生物材料研究形成广阔的视野。
英文摘要
DESCRIPTION (provided by applicant): It is known that resin-modified glass-ionomer cement (RMGIC) is an attractive dental restorative because it has enhanced mechanical strength, bonding and handling properties. However, a disadvantage of this cement is that it contains a large quantity of 2-hydroxyethyl methacrylate (HEMA). Since unreacted HEMA is cytotoxic to pulp and surrounding tissues, elimination of HEMA could make this "intelligent" cement more attractive for both dental and orthopedic applications. We have demonstrated that new and novel amino acid-modified and non-HEMA containing RMGICs exhibit significantly improved mechanical strengths, adhesion and self-etching capabilities. The objective of this research is to develop these novel amino acid based glass-ionomers for both dental and orthopedic applications, in response to NIBIB's RFA for development of novel biomaterials with improved biological and mechanical properties. In this research, inexpensive and biostable amino acid-based polycarboxylic acid will be synthesized and formulated with amino acid derivatives to form an innovative non-HEMA containing RMGIC system. Design of Experiment (DOE) methodology will be applied to optimize molar ratio, molecular weight, grafting ratio of synthesized poly(amino acid), formulations and filler contents. Mechanical strengths and other physical properties of the new cements will be evaluated. The proposed amino acid-based cements will provide extra salt-bridges, thus enhancing adhesion and mechanical strengths. In vitro direct cell contact as well as methylthiazolyldiphenyl tetrazolium (MTT) studies and in vivo bone response will be conducted to determine the biocompatibility and bioactivity of the new cements. Novel restoratives for both dentistry and orthopedics should be an outcome of this basic research to establish commercial biomaterials for future industrial development. Successful achievement of the goal of this project will significantly impact the field of restorative dentistry and orthopedic surgery. This project will create a university-wide collaboration between synthetic polymer chemist, biomaterials scientist, biomechanical engineer and clinical dentist. This project will also provide an ideal training environment for biomedical engineering students because it will allow them, through close interactions with the collaborators from different disciplines, to develop a broad perspective on biomaterials research.
期刊论文(5)
专著(0)
科研奖励(0)
会议论文
A novel light-cured glass-ionomer system for improved dental restoratives.
一种新型光固化玻璃离聚物系统,用于改进牙科修复剂。
DOI: 10.1007/s10856-007-3100-z
发表时间: 2007
期刊: Journal of materials science. Materials in medicine
影响因子: --
作者: [Xie,Dong, Zhao,Jun, Park,Jong-Gu]
通讯作者: Park,Jong-Gu
Synthesis and preparation of novel 4-arm star-shape poly(carboxylic acid)s for improved light-cured glass-ionomer cements.
用于改进光固化玻璃离子水门汀的新型四臂星形聚(羧酸)的合成和制备。
DOI: 10.1016/j.dental.2006.02.008
发表时间: 2007
期刊: Dental materials : official publication of the Academy of Dental Materials
影响因子: --
作者: [Xie,Dong, Park,Jong-Gu, Zhao,Jun]
通讯作者: Zhao,Jun
Novel amino acid-constructed polyalkenoates for dental glass-ionomer restoratives.
用于牙科玻璃离聚物修复剂的新型氨基酸结构聚链烯酸酯。
DOI: 10.1177/0885328206059797
发表时间: 2006
期刊: Journal of biomaterials applications
影响因子: 2.9
作者: [Xie,Dong, Park,Jong-Gu, Faddah,Mona, Zhao,Jun, Khanijoun,HarleenK]
通讯作者: Khanijoun,HarleenK
Novel amino acid modified zinc polycarboxylates for improved dental cements.
用于改进牙科水泥的新型氨基酸改性聚羧酸锌。
DOI: 10.1016/j.dental.2005.01.008
发表时间: 2005
期刊: Dental materials : official publication of the Academy of Dental Materials.
影响因子: --
作者: [Xie,Dong, Faddah,Mona, Park,Jong-Gu]
通讯作者: Park,Jong-Gu
High-performance Biocompatible GIC System with Permanent Antibacterial Function
High-performance Biocompatible GIC System with Permanent Antibacterial Function
Novel Nanostructured Dental Glass-Ionomers for Advanced Dental Restoratives
Novel Nanostructured Dental Glass-Ionomers for Advanced Dental Restoratives