Surface modified NiTi smart biomaterials: Surface engineering and biological compatibility

NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to orthopedic implants. Recently, the use of NiTi smart biomaterials has received growing attention due to their striking features, including a low elastic modulus, shape memory behavior and acceptable biocom...

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Bibliographic Details
Published inCurrent opinion in biomedical engineering Vol. 25; p. 100429
Main Authors Safavi, Mir Saman, Bordbar-Khiabani, Aydin, Walsh, Frank C., Mozafari, Masoud, Khalil-Allafi, Jafar
Format Journal Article
LanguageEnglish
Published Elsevier Inc 01.03.2023
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ISSN2468-4511
2468-4511
DOI10.1016/j.cobme.2022.100429

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Summary:NiTi metallic biomaterials have a broad spectrum of clinical applications from heart stents to orthopedic implants. Recently, the use of NiTi smart biomaterials has received growing attention due to their striking features, including a low elastic modulus, shape memory behavior and acceptable biocompatibility. However, leaching of Ni ions from the surface of NiTi, the need for decreased elastic modulus and the desire for improved biological properties, including better material-cell interactions, biomineralization, and antibacterial activity, have provided the driving force for a wide variety of surface-modification techniques to address these problems before using NiTi in vivo. Depending on the target application, both dry and wet coating techniques have been employed to deposit biocompatible and bioactive layers over NiTi smart biomaterials. The influence of such coatings on the biological characteristics of the NiTi is illustrated. R&D activities have proved fruitful but much work needs to be done before clinical use of coated-NiTi. •The properties and clinical applications of NiTi are highlighted.•The biological characteristics of surface modified NiTi are reviewed.•The influence of operating parameters on biological performance is discussed.
ISSN:2468-4511
2468-4511
DOI:10.1016/j.cobme.2022.100429