Literature DB >> 19426841

Enhanced osteoblast response to an equal channel angular pressing-processed pure titanium substrate with microrough surface topography.

Jin-Woo Park1, Youn-Jeong Kim, Chan Hee Park, Dong-Hee Lee, Young Gun Ko, Je-Hee Jang, Chong Soo Lee.   

Abstract

This study investigated the surface characteristics and in vitro biocompatibility of ultrafine-grain pure titanium substrates produced by equal channel angular pressing (ECAP) using MC3T3-E1 pre-osteoblast cells, compared with those of conventional coarse-grain pure titanium (CP) and Ti-6Al-4V (Ti64) substrates. All Ti surfaces were grit-blasted with hydroxyapatite particles to produce microrough surfaces. The surface characteristics were evaluated by electron back-scattered diffractometry, scanning electron microscopy, contact angle and surface energy measurements, and optical profilometry. The morphology of spread cells, cell attachment, viability, alkaline phosphatase (ALP) activity, quantitative analysis of osteoblastic gene expression and mineralization nodule formation on different surfaces were evaluated. ECAP-processed substrates showed a significantly lower water contact angle and higher surface energy compared with coarse-grain CP and Ti64 substrates (p<0.05). They also showed enhanced cell spreading, attachment, viability and ALP activity compared with the CP and Ti64 surfaces (p<0.05). Real-time polymerase chain reaction analysis showed notably higher ALP, osteopontin and osteocalcin mRNA levels in cells grown on the ECAP surfaces than on the CP and Ti64 surfaces, and the ECAP surfaces showed significantly greater mineralization nodule formation compared with the CP and Ti64 substrates (p<0.05). These results demonstrate the superior osteoblast cell compatibility of microroughened Ti surface made of ECAP-processed ultrafine-grain pure Ti substrates over coarse-grain pure Ti and Ti64 substrates.

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Year:  2009        PMID: 19426841     DOI: 10.1016/j.actbio.2009.04.038

Source DB:  PubMed          Journal:  Acta Biomater        ISSN: 1742-7061            Impact factor:   8.947


  15 in total

1.  Use of polyelectrolyte thin films to modulate osteoblast response to microstructured titanium surfaces.

Authors:  Jung Hwa Park; Rene Olivares-Navarrete; Christine E Wasilewski; Barbara D Boyan; Rina Tannenbaum; Zvi Schwartz
Journal:  Biomaterials       Date:  2012-04-27       Impact factor: 12.479

2.  Using a two-step method of surface mechanical attrition treatment and calcium ion implantation to promote the osteogenic activity of mesenchymal stem cells as well as biomineralization on a β-titanium surface.

Authors:  Run Huang; Yufei Hao; Yusong Pan; Chengling Pan; Xiaolong Tang; Lei Huang; Chao Du; Rui Yue; Diansheng Cui
Journal:  RSC Adv       Date:  2022-07-13       Impact factor: 4.036

3.  Osteoblast differentiation is enhanced by a nano-to-micro hybrid titanium surface created by Yb:YAG laser irradiation.

Authors:  Eduardo Mariscal-Muñoz; Carlos A S Costa; Hewerson S Tavares; Jonas Bianchi; Josimeri Hebling; João P B Machado; Ulf H Lerner; Pedro P C Souza
Journal:  Clin Oral Investig       Date:  2015-07-30       Impact factor: 3.573

4.  Lanthanum-containing hydroxyapatite coating on ultrafine-grained titanium by micro-arc oxidation: a promising strategy to enhance overall performance of titanium.

Authors:  Zhennan Deng; LiLi Wang; Dafeng Zhang; Jinsong Liu; Chuantong Liu; Jianfeng Ma
Journal:  Med Sci Monit       Date:  2014-01-31

5.  Nanostructured Titanium-10 wt% 45S5 Bioglass-Ag Composite Foams for Medical Applications.

Authors:  Karolina Jurczyk; Grzegorz Adamek; Marcelina M Kubicka; Jaroslaw Jakubowicz; Mieczyslaw Jurczyk
Journal:  Materials (Basel)       Date:  2015-03-25       Impact factor: 3.623

6.  Superior Pre-Osteoblast Cell Response of Etched Ultrafine-Grained Titanium with a Controlled Crystallographic Orientation.

Authors:  Seung Mi Baek; Myeong Hwan Shin; Jongun Moon; Ho Sang Jung; See Am Lee; WoonBong Hwang; Jong Taek Yeom; Sei Kwang Hahn; Hyoung Seop Kim
Journal:  Sci Rep       Date:  2017-03-07       Impact factor: 4.379

7.  Significantly enhanced osteoblast response to nano-grained pure tantalum.

Authors:  W T Huo; L Z Zhao; S Yu; Z T Yu; P X Zhang; Y S Zhang
Journal:  Sci Rep       Date:  2017-01-13       Impact factor: 4.379

8.  Osteogenic effects of microRNA-335-5p/lipidoid nanoparticles coated on titanium surface.

Authors:  Qiang Wang; Xiaoying Wang; Paloma Valverde; Dana Murray; Michel M Dard; Thomas Van Dyke; Qiaobing Xu; Xin Xu; Nadeem Karimbux; Qisheng Tu; Jake Chen
Journal:  Arch Oral Biol       Date:  2021-07-06       Impact factor: 2.640

Review 9.  Nanomedicine applications in orthopedic medicine: state of the art.

Authors:  Mozhdeh Mazaheri; Niloofar Eslahi; Farideh Ordikhani; Elnaz Tamjid; Abdolreza Simchi
Journal:  Int J Nanomedicine       Date:  2015-09-28

10.  Gradient Nanostructured Tantalum by Thermal-Mechanical Ultrasonic Impact Energy.

Authors:  Jong-Min Chae; Keun-Oh Lee; Auezhan Amanov
Journal:  Materials (Basel)       Date:  2018-03-20       Impact factor: 3.623

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