Ion implantation of 109Ag stable isotope as a tracer in SS316L biomedical implant for failure detection

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dc.contributor.author Malvi, Bharti
dc.contributor.author Chaudhari, Ramesh
dc.contributor.author C., Balasubramanian
dc.contributor.author Kumar, Ashutosh
dc.contributor.author K., Asokan
dc.contributor.author Das, Swagat
dc.contributor.author Paliwal, Manas
dc.contributor.author Misra, Superb K.
dc.coverage.spatial United States of America
dc.date.accessioned 2022-10-14T15:18:09Z
dc.date.available 2022-10-14T15:18:09Z
dc.date.issued 2022-12
dc.identifier.citation Malvi, Bharti; Chaudhari, Ramesh; C., Balasubramanian; Kumar, Ashutosh; K., Asokan; Das, Swagat; Paliwal, Manas and Misra, Superb K., "Ion implantation of 109Ag stable isotope as a tracer in SS316L biomedical implant for failure detection", Materialstoday Communications, DOI: 10.1016/j.mtcomm.2022.104563, vol. 33, Dec. 2022. en_US
dc.identifier.issn 2352-4928
dc.identifier.uri https://doi.org/10.1016/j.mtcomm.2022.104563
dc.identifier.uri https://repository.iitgn.ac.in/handle/123456789/8206
dc.description.abstract Stainless steel alloys are widely used for biomedical applications ranging from surgical tools to biomedical implant prostheses. Apart from surgical failure, surface degradation (wear and corrosion) leading to poor osteointegration of materials are a major cause of the failure of these bioimplants. Detection of the implant failure, once it is placed inside the body, is very difficult and not so accurate. In this research, high-energy ion implantation is used to develop a tracer embedded alloy. In this novel approach, a stable isotope of silver (109Ag) is embedded as a tracer in SS316L to detect and monitor its degradation. Accelerated and normal static immersion tests were performed in 30 % H2SO4 and simulated body fluid (SBF) to represent the degradation of the implant. These results show a correlation between the isotopic tracer releases with material degradation. Electrochemical corrosion tests demonstrate the ion-implanted specimens exhibit similar corrosion resistance as the bare specimens. In-vitro cytotoxicity assays indicated no significant difference between the cell viability on SS316L and 109Ag ion-implanted samples. The MG-63 osteoblast cells cultured on 109Ag ion-implanted SS316L show a significant enhancement in osteocalcin production compared to SS316L.
dc.description.statementofresponsibility by Bharti Malvi, Ramesh Chaudhari, Balasubramanian C., Ashutosh Kumar, Asokan K., Swagat Das, Manas Paliwal and Superb K. Misra
dc.format.extent vol. 33
dc.language.iso en_US en_US
dc.publisher Elsevier en_US
dc.subject Ion implantation en_US
dc.subject Tracers en_US
dc.subject Biological implants en_US
dc.subject Stable isotopes en_US
dc.subject SS316L en_US
dc.title Ion implantation of 109Ag stable isotope as a tracer in SS316L biomedical implant for failure detection en_US
dc.type Journal Paper en_US
dc.relation.journal Materialstoday Communications


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