OSTEOCONDUCTIVITY

作品数:9被引量:21H指数:1
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相关领域:医药卫生更多>>
相关期刊:《Biomaterials Translational》《Bioactive Materials》《Journal of Biomaterials and Nanobiotechnology》《World Journal of Transplantation》更多>>
相关基金:国家自然科学基金更多>>
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Advances in magnesium-containing bioceramics for bone repair
《Biomaterials Translational》2024年第1期3-20,共18页Lei Qi Tong Zhao Jinge Yan Weiwen Ge Weidong Jiang Jing Wang Mazaher Gholipourmalekabadi Kaili Lin Xiuhui Wang Lei Zhang 
supported by the National Key R&D Program of China(No.2023YFC2414106);National Natural Science Foundation of China(Nos.32271379,82072396);Science and Technology Commission of Shanghai Municipality(Nos.21140900102,21490711700,21140900103);Disciplinary Characteristic Biobank Project of Ninth People’s Hospital affiliated to Shanghai Jiao Tong University School of Medicine(No.YBKB202110);the Interdisciplinary Program of Shanghai Jiao Tong University(No.YG2021ZD12);Cross disciplinary Research Fund of Shanghai Ninth People’s Hospital,Shanghai Jiao Tong University School of Medicine(No.JYJC202219);Shanghai’s Top Priority Research Center(No.2022ZZ01017);CAMS Innovation Fund for Medical Sciences(No.CIFMS,2019-I2M-5-037).
Reconstruction of bone defects or fractures caused by ageing,trauma and tumour resection is still a great challenge in clinical treatment.Although autologous bone graft is considered as gold standard,the source of nat...
关键词:bioactive ions BIOCERAMICS bone repair MAGNESIUM OSTEOCONDUCTIVITY 
Accelerated degradation of HAP/PLLA bone scaffold by PGA blending facilitates bioactivity and osteoconductivity被引量:19
《Bioactive Materials》2021年第2期490-502,共13页Cijun Shuai Wenjing Yang Pei Feng Shuping Peng Hao Pan 
This work was supported by the following funds:(1)The Natural Science Foundation of China(51905553,51935014,81871494,81871498);(2)Hunan Provincial Natural Science Foundation of China(2019JJ50774,2019JJ50588);(3)The Provincial Key R&D Projects of Jiangxi(20201BBE51012);(4)JiangXi Provincial Natural Science Foundation of China(20192ACB20005);(5)Guangdong Province Higher Vocational Colleges&Schools Pearl River Scholar Funded Scheme(2018);(6)The Project of Hunan Provincial Science and Technology Plan(2017RS3008);(7)The Project of State Key Laboratory of High Performance Complex Manufacturing,Central South University;(8)Shenzhen Science and Technology Plan Project(JCYJ20170817112445033).
The incorporation of hydroxyapatite(HAP)into poly-L-lactic acid(PLLA)matrix serving as bone scaffold is expected to exhibit bioactivity and osteoconductivity to those of the living bone.While too low degradation rate ...
关键词:PGA HAP/PLLA SCAFFOLD Degradation Bone regeneration 
Surface Modification of PEEK and Its Osteoconductivity and Anti-Inflammatory Properties
《Journal of Biomaterials and Nanobiotechnology》2018年第3期233-243,共11页Kensuke Kuroda Kenta Igarashi Hiroyasu Kanetaka Masazumi Okido 
Polyetheretherketone (PEEK) is known as one of the “super-engineering plastics” and is used as an intervertebral disk spacer in the body. PEEK has a hydrophobic surface (water contact angle (WCA) > 80°) and high ch...
关键词:POLYETHERETHERKETONE HYDROPHILIZATION Protein Adsorption OSTEOCONDUCTIVITY INFLAMMATORY 
Osteoconductivity Control Based on the Chemical Properties of the Implant Surface
《Journal of Biomaterials and Nanobiotechnology》2018年第1期26-40,共15页Kensuke Kuroda Masazumi Okido 
Metallic materials, such as Ti, Zr, Nb, Ta, and their alloys, and also stainless steels are widely attractive as osteoconductive materials in the dental and orthopedic fields. Ceramics and polymers are also commonly u...
关键词:HYDROPHILICITY HYDROPHOBICITY OSTEOCONDUCTIVITY PROTEIN ADSORPTION Surface MODIFICATION 
Copper as an alternative antimicrobial coating for implants-An in vitro study被引量:1
《World Journal of Transplantation》2017年第3期193-202,共10页Claudia Bergemann Sarah Zaatreh Katharina Wegner Kathleen Arndt Andreas Podbielski Rainer Bader Cornelia Prinz Ulrich Lembke J Barbara Nebe 
Supported by the Federal Ministry of Education and Research of Germany(BMBF,project CEMOSTOBAS),No.13N12105
AIM To investigate osteoconductive and antimicrobial properties of a titanium-copper-nitride(TiC uN) film and an additional BONIT~? coating on titanium substrates.METHODS For micro-structuring, the surface of titanium...
关键词:Implant-coating Antimicrobial effect Titanium plasma spray Titanium-copper-nitride BONIT^(®) OSTEOCONDUCTIVITY 
Osteoconductivity of Hydrophilic Surfaces of Zr-9Nb-3Sn Alloy with Hydrothermal Treatment被引量:1
《Journal of Biomaterials and Nanobiotechnology》2015年第3期126-134,共9页Mansjur Zuldesmi Kensuke Kuroda Masazumi Okido Masato Ueda Masahiko Ikeda 
Zirconium and its alloys are more suitable materials for implant surgery to be performed in a magnetic resonance imaging scanner compared with other implant materials. Although they have high anticorrosion properties ...
关键词:ZIRCONIUM ALLOYS HYDROTHERMAL HYDROPHILIC in VIVO OSTEOCONDUCTIVITY 
Influence of Alloy Elements on the Osteoconductivity of Anodized Ti-29Nb-13Ta-4.6Zr Alloy
《Journal of Biomaterials and Nanobiotechnology》2013年第3期229-236,共8页Dai Yamamoto Atsushi Waki Kensuke Kuroda Ryoichi Ichino Masazumi Okido Masato Ueda Masahiko Ikeda Mitsuo Niinomi Azusa Seki 
Anodizing is expected to be an effective method to improve the osteoconductivity of the Ti-29Nb-13Ta-4.6Zr (TNTZ) alloy because the bioactivity of anodized Ti is good. However, it is not known how the alloy elements i...
关键词:Ti-29Nb-13Ta-4.6Zr ANODIZING Titanium Dioxide ALLOY Element HYDROPHILICITY OSTEOCONDUCTIVITY 
High Osteoconductive Surface of Pure Titanium by Hydrothermal Treatment
《Journal of Biomaterials and Nanobiotechnology》2013年第3期284-290,共7页Mansjur Zuldesmi Atsushi Waki Kensuke Kuroda Masazumi Okido 
Surface properties of Ti implants (especially surface hydrophilicity) influence biological responses at the interface between the bone tissue and the implant. However, only a little research reported the effect of sur...
关键词:Titanium HYDROTHERMAL Treatment SUPERHYDROPHILIC In VIVO OSTEOCONDUCTIVITY ANODIZING 
Osteoconductivity of Superhydrophilic Anodized TiO<sub>2</sub>Coatings on Ti Treated with Hydrothermal Processes
《Journal of Biomaterials and Nanobiotechnology》2013年第1期45-52,共8页Dai Yamamoto Kazushi Arii Kensuke Kuroda Ryoichi Ichino Masazumi Okido Azusa Seki 
Surface hydrophilicity is considered to have a strong influence on the biological reactions of bone-substituting materials. However, the influence of a hydrophilic surface on osteoconductivity is not completely clear,...
关键词:Titanium ANODIZING SUPERHYDROPHILIC Hydrothermal Treatment Phosphate Buffered SALINE OSTEOCONDUCTIVITY 
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