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Surface-protein interactions on different stainless steel grades: effects of protein adsorption, surface changes and metal release
by
Hedberg, Y.
, Odnevall Wallinder, I.
, Blomberg, E.
, Wang, X.
, Lundin, M.
, Hedberg, J.
in
Adsorption
/ Austenitic stainless steels
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Bovine serum albumin
/ Ceramics
/ Chemistry and Materials Science
/ Chromium
/ Composites
/ Corrosion
/ Corrosion rate
/ Corrosion resistance
/ Glass
/ Lysozyme
/ Manganese
/ Materials Science
/ Medical sciences
/ metal release
/ Metals
/ Metals - chemistry
/ Natural Materials
/ Polymer Sciences
/ protein
/ Protein adsorption
/ Protein interaction
/ Proteins
/ Proteins - chemistry
/ Regenerative Medicine/Tissue Engineering
/ Serum albumin
/ Stainless Steel
/ surface
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thin Films
/ Transplants & implants
2013
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Surface-protein interactions on different stainless steel grades: effects of protein adsorption, surface changes and metal release
by
Hedberg, Y.
, Odnevall Wallinder, I.
, Blomberg, E.
, Wang, X.
, Lundin, M.
, Hedberg, J.
in
Adsorption
/ Austenitic stainless steels
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Bovine serum albumin
/ Ceramics
/ Chemistry and Materials Science
/ Chromium
/ Composites
/ Corrosion
/ Corrosion rate
/ Corrosion resistance
/ Glass
/ Lysozyme
/ Manganese
/ Materials Science
/ Medical sciences
/ metal release
/ Metals
/ Metals - chemistry
/ Natural Materials
/ Polymer Sciences
/ protein
/ Protein adsorption
/ Protein interaction
/ Proteins
/ Proteins - chemistry
/ Regenerative Medicine/Tissue Engineering
/ Serum albumin
/ Stainless Steel
/ surface
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thin Films
/ Transplants & implants
2013
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Surface-protein interactions on different stainless steel grades: effects of protein adsorption, surface changes and metal release
by
Hedberg, Y.
, Odnevall Wallinder, I.
, Blomberg, E.
, Wang, X.
, Lundin, M.
, Hedberg, J.
in
Adsorption
/ Austenitic stainless steels
/ Biological and medical sciences
/ Biomaterials
/ Biomedical Engineering and Bioengineering
/ Biomedical materials
/ Bovine serum albumin
/ Ceramics
/ Chemistry and Materials Science
/ Chromium
/ Composites
/ Corrosion
/ Corrosion rate
/ Corrosion resistance
/ Glass
/ Lysozyme
/ Manganese
/ Materials Science
/ Medical sciences
/ metal release
/ Metals
/ Metals - chemistry
/ Natural Materials
/ Polymer Sciences
/ protein
/ Protein adsorption
/ Protein interaction
/ Proteins
/ Proteins - chemistry
/ Regenerative Medicine/Tissue Engineering
/ Serum albumin
/ Stainless Steel
/ surface
/ Surface Properties
/ Surfaces and Interfaces
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
/ Technology. Biomaterials. Equipments
/ Thin Films
/ Transplants & implants
2013
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Surface-protein interactions on different stainless steel grades: effects of protein adsorption, surface changes and metal release
Journal Article
Surface-protein interactions on different stainless steel grades: effects of protein adsorption, surface changes and metal release
2013
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Overview
Implantation using stainless steels (SS) is an example where an understanding of protein-induced metal release from SS is important when assessing potential toxicological risks. Here, the protein-induced metal release was investigated for austenitic (AISI 304, 310, and 316L), ferritic (AISI 430), and duplex (AISI 2205) grades in a phosphate buffered saline (PBS, pH 7.4) solution containing either bovine serum albumin (BSA) or lysozyme (LSZ). The results show that both BSA and LSZ induce a significant enrichment of chromium in the surface oxide of all stainless steel grades. Both proteins induced an enhanced extent of released iron, chromium, nickel and manganese, very significant in the case of BSA (up to 40-fold increase), whereas both proteins reduced the corrosion resistance of SS, with the reverse situation for iron metal (reduced corrosion rates and reduced metal release in the presence of proteins). A full monolayer coverage is necessary to induce the effects observed.
Publisher
Springer US,Springer,Springer Nature B.V
Subject
/ Biological and medical sciences
/ Biomedical Engineering and Bioengineering
/ Ceramics
/ Chemistry and Materials Science
/ Chromium
/ Glass
/ Lysozyme
/ Metals
/ protein
/ Proteins
/ Regenerative Medicine/Tissue Engineering
/ surface
/ Surgery (general aspects). Transplantations, organ and tissue grafts. Graft diseases
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