Nalazite se na CroRIS probnoj okolini. Ovdje evidentirani podaci neće biti pohranjeni u Informacijskom sustavu znanosti RH. Ako je ovo greška, CroRIS produkcijskoj okolini moguće je pristupi putem poveznice www.croris.hr
izvor podataka: crosbi

The positive Influence of Cyclic Potentiodynamic Polarization (CPP) Passivation of the SS316LS Surface on its Response to Fibronectin and Pre-osteoblasts (CROSBI ID 160914)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Shahryari, Arash ; Azari, Fereshteh ; Vali, Hojatollah ; Omanovic, Sasha The positive Influence of Cyclic Potentiodynamic Polarization (CPP) Passivation of the SS316LS Surface on its Response to Fibronectin and Pre-osteoblasts // PCCP. Physical chemistry chemical physics, 11 (2009), 29; 6218-6224. doi: 10.1039/b902881a

Podaci o odgovornosti

Shahryari, Arash ; Azari, Fereshteh ; Vali, Hojatollah ; Omanovic, Sasha

engleski

The positive Influence of Cyclic Potentiodynamic Polarization (CPP) Passivation of the SS316LS Surface on its Response to Fibronectin and Pre-osteoblasts

The influence of an electrochemical surface passivation technique (cyclic potentiodynamic polarization, CPP) on the physico-chemical surface properties of SS316LS and its subsequent response to fibronectin (Fn) and pre-osteoblasts were investigated. Contact angle and zeta-potential measurements showed that the CPP-modified surface is more hydrophilic and more positively charged than the unmodified surface. Polarization modulation infrared reflection absorption spectroscopy (PM-IRRAS) was used to investigate the interaction of Fn with both surfaces. The saturated surface concentration of adsorbed Fn was higher on the CPP-modified surface. As well, significant changes were identified in the secondary structure of Fn adsorbed on both surfaces, in comparison to its native state. This data also indicated a higher degree of Fn unfolding on the CPP-modified surface. Cell studies indicated that the attachment, proliferation and morphology of pre-osteoblasts were significantly improved on the CPP-modified surface, which was attributed to the more open conformation of Fn on the CPP-modified surface. Thus, the CPP surface passivation method was demonstrated to yield a SS316LS surface of enhanced biocompatibility.

stainless steel SS316LS ; pre-osteoblasts ; fibronectin ; electrochemical passivation ; adsorption

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

nije evidentirano

Podaci o izdanju

11 (29)

2009.

6218-6224

objavljeno

1463-9076

10.1039/b902881a

Povezanost rada

Kemija

Poveznice
Indeksiranost