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The modified surfaces exhibited higher polarity and hydrophilicity in comparison with non grafted surfaces.
Peptide-amphiphile modified surfaces exhibited substantially superior cellular responses compared to those on the covalently immobilized peptide.
Compared with the native PDMS microchannels, the modified surfaces exhibited much better wettability, more stable and enhanced electroosmotic mobility, and less nonspecific adsorption.
Compared with the native PDMS microchannels, the modified surfaces exhibited much better wettability, more stable electroosmotic mobility, and less nonspecific adsorption.
These chemically modified surfaces exhibited regulation of NSCs on adhesion, migration and differentiation potential, providing chemical means for the design of biomaterials to direct NSCs lineage specification for neural tissue engineering.
Although both the MHA film and the protein monolayer displayed smaller GIXRD 2θ degrees than the bare gold substrate, the two modified surfaces exhibited different profiles and distributions of their X-ray diffraction peaks.
Similar(54)
It is found that the modified surfaces exhibit increased ammonia selectivity compared to a pure Pt film.
The wettability measurements showed that the CS and PEET modified surfaces exhibit high values of water contact angle.
The modified surface exhibited fine re-crystallized austenite grains.
The resulting ODP modified surface exhibited dual-scale roughness with a stable static contact angle of 170 ± 2°.
Compared to conventional methods, enzymes immobilized on peptide-modified surfaces exhibited higher specific activity and stability, as well as controlled protein orientation.
Related(18)
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modified polycyanates exhibited
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modified implants exhibited
modified concretes exhibited
modified electrodes exhibited
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modified cathodes exhibited
modified powders exhibited
modified polypeptides exhibited
modified fabrics exhibited
modified membranes exhibited
modified granules exhibited
modified starches exhibited
modified alloys exhibited
modified surfaces were
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