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Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters

Magnetic nanowires (MNWs) can have their moments reversed via several mechanisms that are controlled using the composition, length, diameter, and density of nanowires in arrays as-synthesized or as individual nanoparticles in assays or gels. This tailoring of magnetic reversal leads to unique proper...

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Autores principales: Kouhpanji, Mohammad Reza Zamani, Zhang, Yali, Um, Joseph, Srinivasan, Kartihik, Sharma, Anirudh, Shore, Daniel, Gao, Zhe, Chen, Yicong, Harpel, Allison, Porshokouh, Zohreh Nemati, Gage, Thomas E., Dragos-Pinzaru, Oana, Tabakovic, Ibro, Visscher, P. B., Bischof, John, Modiano, Jaime F., Franklin, Rhonda, Stadler, Bethanie J. H.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976993/
https://www.ncbi.nlm.nih.gov/pubmed/36864851
http://dx.doi.org/10.1109/tmag.2022.3151608
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author Kouhpanji, Mohammad Reza Zamani
Zhang, Yali
Um, Joseph
Srinivasan, Kartihik
Sharma, Anirudh
Shore, Daniel
Gao, Zhe
Chen, Yicong
Harpel, Allison
Porshokouh, Zohreh Nemati
Gage, Thomas E.
Dragos-Pinzaru, Oana
Tabakovic, Ibro
Visscher, P. B.
Bischof, John
Modiano, Jaime F.
Franklin, Rhonda
Stadler, Bethanie J. H.
author_facet Kouhpanji, Mohammad Reza Zamani
Zhang, Yali
Um, Joseph
Srinivasan, Kartihik
Sharma, Anirudh
Shore, Daniel
Gao, Zhe
Chen, Yicong
Harpel, Allison
Porshokouh, Zohreh Nemati
Gage, Thomas E.
Dragos-Pinzaru, Oana
Tabakovic, Ibro
Visscher, P. B.
Bischof, John
Modiano, Jaime F.
Franklin, Rhonda
Stadler, Bethanie J. H.
author_sort Kouhpanji, Mohammad Reza Zamani
collection PubMed
description Magnetic nanowires (MNWs) can have their moments reversed via several mechanisms that are controlled using the composition, length, diameter, and density of nanowires in arrays as-synthesized or as individual nanoparticles in assays or gels. This tailoring of magnetic reversal leads to unique properties that can be used as a signature for reading out the type of MNW for applications as nano-barcodes. When synthesized inside track-etched polycarbonate membranes, the resulting MNW-embedded membranes can be used as biocompatible bandaids for detection without contact or optical sighting. When etched out of the growth template, free-floating MNWs are internalized by cells at 37 °C such that cells and/or exosomes can be collected and detected. In applications of cryopreservation, MNWs can be suspended in cryopreservation agents (CPAs) for injection into the blood vessels of tissues and organs as they are vitrified to –200 °C. Using an alternating magnetic field, the MNWs can then be nanowarmed rapidly to prevent crystallization and uniformly to prevent cracking of specimens, for example, as grafts or transplants. This invited paper is a review of recent progress in the specific bioapplications of MNWs to barcodes, biocomposites, and nanowarmers.
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spelling pubmed-99769932023-03-01 Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters Kouhpanji, Mohammad Reza Zamani Zhang, Yali Um, Joseph Srinivasan, Kartihik Sharma, Anirudh Shore, Daniel Gao, Zhe Chen, Yicong Harpel, Allison Porshokouh, Zohreh Nemati Gage, Thomas E. Dragos-Pinzaru, Oana Tabakovic, Ibro Visscher, P. B. Bischof, John Modiano, Jaime F. Franklin, Rhonda Stadler, Bethanie J. H. IEEE Trans Magn Article Magnetic nanowires (MNWs) can have their moments reversed via several mechanisms that are controlled using the composition, length, diameter, and density of nanowires in arrays as-synthesized or as individual nanoparticles in assays or gels. This tailoring of magnetic reversal leads to unique properties that can be used as a signature for reading out the type of MNW for applications as nano-barcodes. When synthesized inside track-etched polycarbonate membranes, the resulting MNW-embedded membranes can be used as biocompatible bandaids for detection without contact or optical sighting. When etched out of the growth template, free-floating MNWs are internalized by cells at 37 °C such that cells and/or exosomes can be collected and detected. In applications of cryopreservation, MNWs can be suspended in cryopreservation agents (CPAs) for injection into the blood vessels of tissues and organs as they are vitrified to –200 °C. Using an alternating magnetic field, the MNWs can then be nanowarmed rapidly to prevent crystallization and uniformly to prevent cracking of specimens, for example, as grafts or transplants. This invited paper is a review of recent progress in the specific bioapplications of MNWs to barcodes, biocomposites, and nanowarmers. 2022-08 2022-02-23 /pmc/articles/PMC9976993/ /pubmed/36864851 http://dx.doi.org/10.1109/tmag.2022.3151608 Text en https://creativecommons.org/licenses/by/4.0/This work is licensed under a Creative Commons Attribution 4.0 License. For more information, see (https://creativecommons.org/licenses/by/4.0/
spellingShingle Article
Kouhpanji, Mohammad Reza Zamani
Zhang, Yali
Um, Joseph
Srinivasan, Kartihik
Sharma, Anirudh
Shore, Daniel
Gao, Zhe
Chen, Yicong
Harpel, Allison
Porshokouh, Zohreh Nemati
Gage, Thomas E.
Dragos-Pinzaru, Oana
Tabakovic, Ibro
Visscher, P. B.
Bischof, John
Modiano, Jaime F.
Franklin, Rhonda
Stadler, Bethanie J. H.
Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title_full Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title_fullStr Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title_full_unstemmed Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title_short Bioapplications of Magnetic Nanowires: Barcodes, Biocomposites, Heaters
title_sort bioapplications of magnetic nanowires: barcodes, biocomposites, heaters
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9976993/
https://www.ncbi.nlm.nih.gov/pubmed/36864851
http://dx.doi.org/10.1109/tmag.2022.3151608
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