NANOTOPOGRAPHY

作品数:18被引量:40H指数:3
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相关领域:生物学更多>>
相关期刊:《Journal of Rare Earths》《Biomaterials Translational》《Journal of Magnesium and Alloys》《International Journal of Smart and Nano Materials》更多>>
相关基金:国家自然科学基金中国博士后科学基金国家重点基础研究发展计划广东省自然科学基金更多>>
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Mechanistic switch in corrosion behavior of magnesium alloy diamond lattice structures induced by argon plasma treatment
《Journal of Magnesium and Alloys》2025年第1期101-119,共19页Viviana M.Posadaa Alexandru Marin Tonny Naranjo Juan Ramírez Patricia Fernández-Morales 
supported by Huck Institutes of the Life Sciences at Penn State University through the Huck Innovative and Transformational Seed Grant(HITS).
Advancing 3D magnesium(Mg)development beyond current limitations requires controlling Mg alloy degradation in pre-designed,low-dimension architectures.This study reveals a mechanistic switch in the corrosion behavior ...
关键词:Mg Corrosion resistance Cellular materials NANOTOPOGRAPHY Nano-medicine Diirected plasma nanosynthesis 
Inorganic virus-like nanoparticles for biomedical applications:a minireview
《Journal of Future Foods》2024年第1期71-82,共12页Liying Zhao Jiahong Zhou Dawei Deng 
This work was financially supported by the National Natural Science Foundation of China(82172085);the“Double First-Class”University project(CPU2022QZ14);the Jiangsu Provincial Natural Science Fund for Distinguished Young Scholars(BK20190028).
Nature has the ingenious capability to design spiky topological features at the macro-and nanoscales,which exhibits fascinating interface adhesive properties by means of multivalent interactions.Following a biomimetic...
关键词:NANOTOPOGRAPHY Virus-like SPIKE Inorganic particles Biomedical applications 
Tunable nano-engineered anisotropic surface for enhanced mechanotransduction and soft-tissue integration
《Nano Research》2023年第5期7293-7303,共11页Pingping Han Tianqi Guo Anjana Jayasree Guillermo A.Gomez Karan Gulati Sašo Ivanovski 
T.G.and A.J.are supported by the University of Queensland Graduate School Scholarships(UQGSS).K.G.is supported by the National Health and Medical Research Council(NHMRC)Early Career Fellowship(No.APP1140699).
Electrochemically engineered titania(TiO_(2))nanopores enable tailored cellular function;however,the cellular mechanosensing mechanisms dictating the cell response and soft tissue integration are yet to be elucidated....
关键词:titanium NANOPORES NANOTOPOGRAPHY fibroblast mechanosensing MECHANOTRANSDUCTION ligament differentiation 
The influence of nanotopography on cell behaviour through interactions with the extracellular matrix-A review被引量:6
《Bioactive Materials》2022年第9期145-159,共15页Jiajun Luo Matthew Walker Yinbo Xiao Hannah Donnelly Matthew J.Dalby Manuel Salmeron-Sanchez 
support from the Leverhulme Trust through grant RPG-2019-252 and the Engineering and Physical Sciences Research Council(EPSRC)grant EP/P001114/1.
Nanotopography presents an effective physical approach for biomaterial cell manipulation mediated through material-extracellular matrix interactions.The extracellular matrix that exists in the cellular microenvironmen...
关键词:NANOTOPOGRAPHY Cell-material interaction Protein adsorption BIOMATERIALS 
Cellular responses to nanoscale substrate topography of TiO_(2) nanotube arrays: cell morphology and adhesion被引量:2
《Biomaterials Translational》2022年第3期221-233,共13页Monchupa Kingsak Panita Maturavongsadit Hong Jiang Qian Wang 
support The authors gratefully acknowledge financial support from the National Science Foundation and SC EPSCoR IDeA program under NSF Award#OIA 1655740;GEAR CRP Award Number 18-GC01.
Nanotopographical features can be beneficial in augmenting cell functions and increasing osteogenic potential.However,the relationships between surface topographies and biological responses are difficult to establish ...
关键词:cell adhesion cellular responses morphology NANOTOPOGRAPHY TiO_(2)nanotube arrays 
Enhanced bone regenerative properties of calcium phosphate ceramic granules in rabbit posterolateral spinal fusion through a reduction of grain size被引量:2
《Bioactive Materials》2022年第5期90-106,共17页Xiangfeng Li Quan Zhou Yonghao Wu Cong Feng Xi Yang Linnan Wang Yumei Xiao Kai Zhang Xiangdong Zhu Limin Liu Yueming Song Xingdong Zhang 
sponsored by the National Natural Science Foundation of China(52002256);Sichuan Science and Technology Innovation Team of China(2019JDTD0008);China Postdoctoral Innovation Talent Support program(BX20180204);China Postdoctoral Science Foundation(2018M643483);Sichuan University Postdoctoral Interdisciplinary Innovation Fund(0900904153024).
Osteoinductivity is a crucial factor to determine the success and efficiency of posterolateral spinal fusion(PLF)by employing calcium phosphate(Ca-P)bioceramics.In this study,three kinds of Ca-P ceramics with microsca...
关键词:Calcium phosphate ceramics NANOTOPOGRAPHY Osteogenic differentiation OSTEOINDUCTIVITY Posterolateral spinal fusion 
Surface modification of titanium implants with micro–nanotopography and NIR photothermal property for treating bacterial infection and promoting osseointegration被引量:3
《Rare Metals》2022年第2期673-688,共16页Yao Ding Zhang Yuan Jin-Wei Hu Kun Xu Hong Wang Peng Liu Kai-Yong Cai 
This work was financially supported by the State Key Project of Research and Development(Nos.2016YFC1100300 and 2017YFB0702603);the National Natural Science Foundation of China(Nos.51825302,21734002 and 51673032).The Analytical and Testing Center of Chongqing University is greatly acknowledged for the help with the characterization of materials.
A double acid corrosion and subsequent hydrothermal treatment were used to fabricate a micro–nano-structured Ti substrates(Ti–M–N).Afterward,the mesoporous polydopamine(MPDA)nanoparticles as photothermal agent were...
关键词:Titanium implants Bacterial infection OSSEOINTEGRATION Photothermal therapy Micro–nanotopography 
Rapid nanomolding of nanotopography on flexible substrates to control muscle cell growth with enhanced maturation
《Microsystems & Nanoengineering》2021年第6期71-85,共15页Cong Wu Chriss S.M.Chin Qingyun Huang Ho-Yin Chan Xinge Yu Vellaisamy A.L.Roy Wen J.Li 
This project was supported by the Hong Kong Research Grants Council(CERG project No.11213817 and No.11205415,Joint Lab Scheme project No.JLFS/E104/18).
In vivo,multiple biophysical cues provided by highly ordered connective tissues of the extracellular matrix regulate skeletal muscle cells to align in parallel with one another.However,in routine in vitro cell culture...
关键词:ROUTINE STIMULATION TOPOGRAPHY 
Bioadaptation of implants to In vitro and In vivo oxidative stress pathological conditions via nanotopography-induced FoxO1 signaling pathways to enhance Osteoimmunal regeneration被引量:2
《Bioactive Materials》2021年第10期3164-3176,共13页Jingyan Huang Ruoqi Li Jinghong Yang Min Cai Yichen Lee Anxun Wang Bin Cheng Yan Wang 
This work was supported by the Guangdong Financial Fund for High-Caliber Hospital Construction(174-2018-XMZC-0001-03-0125/D-09,China);the Guangdong Basic and Applied Basic Research Foundation(2019A1515011842,2020A1515010291,China).
Varieties of pathological conditions,including diabetes,are closely related to oxidative stress(OS),but the osseointegration or bioadaptation of implants to OS and the related mechanism remain poorly explored.In this ...
关键词:Oxidative stress OSTEOGENESIS TiO2 nanotubes FOXO1 Inflammation 
Regulation of osteoblast functions on titanium surfaces with different micro/nanotopographies and compositions
《Science China(Technological Sciences)》2019年第4期559-568,共10页HE Peng WANG XiaoLan NING ChengYun LIU XiaoWei LI Mei XU HaiDong GUO GuoDong MAO GuangPing LIU Gang XU Bin ZHANG Yu ZHAO JianNing 
supported of by the National Key Research and Development Program of China(Grant No.2016YFB0700803);the National Natural Science Foundation of China(Grant Nos.81501925,81501859,31700880);the Natural Science Foundation of Guangdong Province(Grant No.2015A030312004);the Science and Technology Planning Project of Guangzhou city(Grant No.201604020110)
Surface modification of medical implants is considered as an effective method to improve cellular behaviors and the integration of tissues with materials. Titanium(Ti)-based materials with four different micro/nano-st...
关键词:OSTEOBLAST FUNCTIONS micro/nanotopography composition TITANIUM 
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