Detailed Information on Publication Record
2022
Effect of Nitinol surface with nanotubes and/or ordered nanopores on cell behavior
VRCHOVECKÁ, Kateřina, Jana MRÁZKOVÁ and Monika GOLDBERGOVÁBasic information
Original name
Effect of Nitinol surface with nanotubes and/or ordered nanopores on cell behavior
Authors
VRCHOVECKÁ, Kateřina (203 Czech Republic, belonging to the institution), Jana MRÁZKOVÁ (203 Czech Republic, belonging to the institution) and Monika GOLDBERGOVÁ (203 Czech Republic, guarantor, belonging to the institution)
Edition
Metallomics, Oxford, Oxford University Press, 2022, 1756-5901
Other information
Language
English
Type of outcome
Článek v odborném periodiku
Field of Study
10608 Biochemistry and molecular biology
Country of publisher
United Kingdom of Great Britain and Northern Ireland
Confidentiality degree
není předmětem státního či obchodního tajemství
References:
Impact factor
Impact factor: 3.400
RIV identification code
RIV/00216224:14110/22:00119749
Organization unit
Faculty of Medicine
UT WoS
000762064400001
Keywords in English
Nitinol; surface nanostructuration; anodic oxidation; Ni ion release; cell behavior
Tags
International impact, Reviewed
Změněno: 20/2/2023 11:12, Mgr. Tereza Miškechová
Abstract
V originále
Recent medical applications have specific requirements on materials and Nitinol can fulfill them due to its exceptional characteristics, which can be further improved by modifications of the material surface. Various surface nanostructuring methods are utilized to enhance characteristics of oxide layer, which naturally develops on the Nitinol surface, leading to improved biocompatibility and corrosion resistance. This review is focused on studies investigating the behavior of various cell types on surface nanotubes and ordered nanopores prepared by anodic oxidation, a technique allowing fabrication of nanostructures with defined parameters. Results showed that certain dimensions of nanotubes positively affect adhesion and viability of osteoblasts and endothelial cells on the surface, contrary to negative effect on smooth muscle cells, both required by the medical applications. Furthermore, increased antibacterial effect correlated with the nanostructure topography and release rates of Ni ions.
Links
GA20-11321S, research and development project |
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MUNI/A/1391/2021, interní kód MU |
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NU20-08-00149, research and development project |
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