Literature DB >> 19525576

Influence of surface wettability on competitive protein adsorption and initial attachment of osteoblasts.

Jianhua Wei1, Toshio Igarashi, Naoto Okumori, Takayasu Igarashi, Takashi Maetani, Baolin Liu, Masao Yoshinari.   

Abstract

This study investigated the influence of surface wettability on competitive protein adsorption and the initial attachment of osteoblasts. A thin-film coating of hexamethyldisiloxane (HMDSO) and subsequent O(2)-plasma treatment was carried out on substrates with a mirror surface in order to create a wide range of wettabilities. The adsorption behavior of fibronectin (Fn) and albumin (Alb) in both individual and competitive mode, and the initial attachment of mouse osteoblastic cells (MC3T3-E1) over a wide range of wettabilities were investigated. The contact angle of HMDSO coatings without O(2)-plasma treatment against double-distilled water was more than 100 degrees, whereas it dramatically decreased after the O(2)-plasma treatment to almost 0 degrees, resulting in super-hydrophilicity. Individually, Fn adsorption showed a biphasic inclination, whereas Alb showed greater adsorption to hydrophobic surfaces. In the competitive mode, in a solution containing both Fn and Alb, Fn showed greater adsorption on hydrophilic surfaces, whereas Alb predominantly adsorbed on hydrophobic surfaces. The initial attachment of osteoblastic cells increased with an increase in surface wettability, in particular, on a super-hydrophilic surface, which correlated well with Fn adsorption in the competitive mode. These results suggest that Fn adsorption may be responsible for increasing cell adhesion on hydrophilic surfaces in a body fluid or culture media under physiological conditions.

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Year:  2009        PMID: 19525576     DOI: 10.1088/1748-6041/4/4/045002

Source DB:  PubMed          Journal:  Biomed Mater        ISSN: 1748-6041            Impact factor:   3.715


  60 in total

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3.  Stimulated osteoblastic proliferation by mesoporous silica xerogel with high specific surface area.

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4.  Initial cell adhesion of three cell types in the presence and absence of serum proteins.

Authors:  Martina Verdanova; Pavla Sauerova; Ute Hempel; Marie Hubalek Kalbacova
Journal:  Histochem Cell Biol       Date:  2017-04-21       Impact factor: 4.304

5.  Biological evaluation of ultrananocrystalline and nanocrystalline diamond coatings.

Authors:  Shelby A Skoog; Girish Kumar; Jiwen Zheng; Anirudha V Sumant; Peter L Goering; Roger J Narayan
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6.  Biological evaluation of polyvinyl alcohol hydrogel crosslinked by polyurethane chain for cartilage tissue engineering in rabbit model.

Authors:  Mohammad Ali Shokrgozar; Shahin Bonakdar; Mohammad Mehdi Dehghan; Shahriar Hojjati Emami; Leila Montazeri; Shahram Azari; Mohsen Rabbani
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7.  Controlled oxidative nanopatterning of microrough titanium surfaces for improving osteogenic activity.

Authors:  Guoxin Tan; Ying Tan; Guoxin Ni; Guobo Lan; Lei Zhou; Peng Yu; Jingwen Liao; Yu Zhang; Zhaoyi Yin; Hang Wang; Chengyun Ning
Journal:  J Mater Sci Mater Med       Date:  2014-05-15       Impact factor: 3.896

8.  Surface morphology, tribological properties and in vitro biocompatibility of nanostructured zirconia thin films.

Authors:  M Bianchi; A Gambardella; M Berni; S Panseri; M Montesi; N Lopomo; A Tampieri; M Marcacci; A Russo
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Review 9.  Collagen based barrier membranes for periodontal guided bone regeneration applications.

Authors:  Zeeshan Sheikh; Javairia Qureshi; Abdullah M Alshahrani; Heba Nassar; Yuichi Ikeda; Michael Glogauer; Bernhard Ganss
Journal:  Odontology       Date:  2016-09-09       Impact factor: 2.634

10.  Fabrication and characterization of thiol-triacrylate polymer via Michael addition reaction for biomedical applications.

Authors:  Anoosha Forghani; Leah Garber; Cong Chen; Fariborz Tavangarian; Timothy B Tighe; Ram Devireddy; John A Pojman; Daniel Hayes
Journal:  Biomed Mater       Date:  2018-10-25       Impact factor: 3.715

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