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Manufacture and Cytotoxicity of a Lead-free Piezoelectric Ceramic as a Bone Substitute—Consolidation of Porous Lithium Sodium Potassium Niobate by Cold Isostatic Pressing 被引量:3
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作者 Qi Wang Jun Yang +4 位作者 Wu Zhang Roxanne Khoie Yi-ming Li Jian-guo Zhu Zhi-qing Chen 《International Journal of Oral Science》 SCIE CAS CSCD 2009年第2期99-104,共6页
Aim The piezoelectric properties and cytotoxicity of a porous lead-free piezoelectric ceramic for use as a direct bone substitute were investigated. Methodology Cold isostatic pressing (CIP) was applied to fabricate... Aim The piezoelectric properties and cytotoxicity of a porous lead-free piezoelectric ceramic for use as a direct bone substitute were investigated. Methodology Cold isostatic pressing (CIP) was applied to fabricate porous lithium sodium potassium niobate (Li0.06Na0.5K0.44) NbO3 specimens using a pore-forming method. The morphologies of the CIP-processed specimens were characterized and compared to those of specimens made by from conventional pressing procedures. The effects of the ceramic on the attachment and proliferation of osteoblasts isolated from the cranium of 1-day-old Sprague- Dawley rats were examined by a scanning electron microscopy (SEM) and metbylthiazol tetrazolium (MTT) assay. Results The results showed that CIP enhanced piezoelectricity and biological performance of the niobate specimen, and also promoted an extracellular matrix-like topography of it. In vitro studies showed that the CIP-enhanced material had positive effects on the attachment and proliferation of osteoblasts. Conclusion Niobate ceramic generated by CIP shows a promise for being a piezoelectric composite bone substitute. 展开更多
关键词 lead-free piezoelectric ceramic cold isostatic pressing (CIP) CYTOCOMPATIBILITY OSTEOBLAST
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牙科材料的生物相容性——一个日益受到关注的领域 被引量:1
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作者 李一鸣 《口腔材料器械杂志》 2011年第1期5-9,共5页
早期牙科修复设计侧重於恢复或改进功能,因此,长期以来对牙科材料的要求多注重其机械、化学和物理性能,以期修复体在行使功能时具有足够强度并能够维持结构完整,但是往往忽略牙科材料与口腔组织可能发生的生物反应及其后果。随着生物和... 早期牙科修复设计侧重於恢复或改进功能,因此,长期以来对牙科材料的要求多注重其机械、化学和物理性能,以期修复体在行使功能时具有足够强度并能够维持结构完整,但是往往忽略牙科材料与口腔组织可能发生的生物反应及其后果。随着生物和材料科学的发展,人们已逐步认识到, 展开更多
关键词 生物相容性 牙科材料 牙科修复 物理性能 结构完整 生物反应 口腔组织 材料科学
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