Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: formation and patterning of supported phospholipid bilayers on the surface of a …

FF Rossetti, M Bally, R Michel, M Textor, I Reviakine - Langmuir, 2005 - ACS Publications
Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …

Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: formation and patterning of supported phospholipid bilayers on the surface of a …

FF Rossetti, M Bally, R Michel, M Textor… - Langmuir: the ACS …, 2005 - europepmc.org
Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …

Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: formation and patterning of supported phospholipid bilayers on the surface of a …

FF Rossetti, M Bally, R Michel, M Textor… - Langmuir: the ACS …, 2005 - sonar.ch
English Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …

[引用][C] Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the …

FF Rossetti, M Bally, R Michel, M Textor… - …, 2005 - research-collection.ethz.ch
Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes -
Research Collection Header Upper Right Menu Log in de jump to https://www.ethz.ch Research …

[引用][C] Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: Formation and patterning of supported phospholipid bilayers on the …

FF ROSSETTI, M BALLY, R MICHEL, M TEXTOR… - …, 2005 - pascal-francis.inist.fr
Interactions between titanium dioxide and phosphatidyl serine-containing liposomes :
Formation and patterning of supported phospholipid bilayers on the surface of a medically …

[引用][C] Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the …

FF Rossetti, M Bally, R Michel, M Textor, I Reviakine - Langmuir, 2005 - infona.pl
Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes:
Formation and Patterning of Supported Phospholipid Bilayers on the Surface of a Medically …

Interactions between titanium dioxide and phosphatidyl serine-containing liposomes: formation and patterning of supported phospholipid bilayers on the surface of a …

FF Rossetti, M Bally, R Michel… - Langmuir: the ACS …, 2005 - pubmed.ncbi.nlm.nih.gov
Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …

[引用][C] Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the …

FF Rossetti, M Bally, R Michel, M Textor, I Reviakine - Langmuir, 2005 - cir.nii.ac.jp
Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes:
Formation and Patterning of Supported Phospholipid Bilayers on the Surface of a Medically …

[PDF][PDF] Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the …

FF Rossetti, M Bally, R Michel, M Textor, I Reviakine - Biochemistry, 1998 - ireviakine.net
Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …

[PDF][PDF] Interactions between Titanium Dioxide and Phosphatidyl Serine-Containing Liposomes: Formation and Patterning of Supported Phospholipid Bilayers on the …

FF Rossetti, M Bally, R Michel, M Textor, I Reviakine - Biochemistry, 1998 - ireviakine.net
Titanium is widely used in biomedical applications. Its mechanical properties and
biocompatibility, conferred by a layer of oxide present on its surface, make titanium the …