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Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins

Superparamagnetic nanobeads offer several advantages over microbeads for immunocapture of nanocarriers (extracellular vesicles, lipoproteins, and viruses) in a bioassay: high-yield capture, reduction in incubation time, and higher capture capacity. However, nanobeads are difficult to “pull-down” bec...

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Autores principales: Zhang, Chenguang, Huo, Xiaoye, Zhu, Yini, Higginbotham, James N., Cao, Zheng, Lu, Xin, Franklin, Jeffrey L., Vickers, Kasey C., Coffey, Robert J., Senapati, Satyajyoti, Wang, Ceming, Chang, Hsueh-Chia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Nature Publishing Group UK 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9741596/
https://www.ncbi.nlm.nih.gov/pubmed/36496485
http://dx.doi.org/10.1038/s42003-022-04321-9
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author Zhang, Chenguang
Huo, Xiaoye
Zhu, Yini
Higginbotham, James N.
Cao, Zheng
Lu, Xin
Franklin, Jeffrey L.
Vickers, Kasey C.
Coffey, Robert J.
Senapati, Satyajyoti
Wang, Ceming
Chang, Hsueh-Chia
author_facet Zhang, Chenguang
Huo, Xiaoye
Zhu, Yini
Higginbotham, James N.
Cao, Zheng
Lu, Xin
Franklin, Jeffrey L.
Vickers, Kasey C.
Coffey, Robert J.
Senapati, Satyajyoti
Wang, Ceming
Chang, Hsueh-Chia
author_sort Zhang, Chenguang
collection PubMed
description Superparamagnetic nanobeads offer several advantages over microbeads for immunocapture of nanocarriers (extracellular vesicles, lipoproteins, and viruses) in a bioassay: high-yield capture, reduction in incubation time, and higher capture capacity. However, nanobeads are difficult to “pull-down” because their superparamagnetic feature requires high nanoscale magnetic field gradients. Here, an electrodeposited track-etched membrane is shown to produce a unique superparamagnetic nano-edge ring with multiple edges around nanopores. With a uniform external magnetic field, the induced monopole and dipole of this nano edge junction combine to produce a 10× higher nanobead trapping force. A dense nanobead suspension can be filtered through the magnetic nanoporous membrane (MNM) at high throughput with a 99% bead capture rate. The yield of specific nanocarriers in heterogeneous media by nanobeads/MNM exceeds 80%. Reproducibility, low loss, and concentration-independent capture rates are also demonstrated. This MNM material hence expands the application of nanobead immunocapture to physiological samples.
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spelling pubmed-97415962022-12-12 Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins Zhang, Chenguang Huo, Xiaoye Zhu, Yini Higginbotham, James N. Cao, Zheng Lu, Xin Franklin, Jeffrey L. Vickers, Kasey C. Coffey, Robert J. Senapati, Satyajyoti Wang, Ceming Chang, Hsueh-Chia Commun Biol Article Superparamagnetic nanobeads offer several advantages over microbeads for immunocapture of nanocarriers (extracellular vesicles, lipoproteins, and viruses) in a bioassay: high-yield capture, reduction in incubation time, and higher capture capacity. However, nanobeads are difficult to “pull-down” because their superparamagnetic feature requires high nanoscale magnetic field gradients. Here, an electrodeposited track-etched membrane is shown to produce a unique superparamagnetic nano-edge ring with multiple edges around nanopores. With a uniform external magnetic field, the induced monopole and dipole of this nano edge junction combine to produce a 10× higher nanobead trapping force. A dense nanobead suspension can be filtered through the magnetic nanoporous membrane (MNM) at high throughput with a 99% bead capture rate. The yield of specific nanocarriers in heterogeneous media by nanobeads/MNM exceeds 80%. Reproducibility, low loss, and concentration-independent capture rates are also demonstrated. This MNM material hence expands the application of nanobead immunocapture to physiological samples. Nature Publishing Group UK 2022-12-10 /pmc/articles/PMC9741596/ /pubmed/36496485 http://dx.doi.org/10.1038/s42003-022-04321-9 Text en © The Author(s) 2022 https://creativecommons.org/licenses/by/4.0/Open Access This article is licensed under a Creative Commons Attribution 4.0 International License, which permits use, sharing, adaptation, distribution and reproduction in any medium or format, as long as you give appropriate credit to the original author(s) and the source, provide a link to the Creative Commons license, and indicate if changes were made. The images or other third party material in this article are included in the article’s Creative Commons license, unless indicated otherwise in a credit line to the material. If material is not included in the article’s Creative Commons license and your intended use is not permitted by statutory regulation or exceeds the permitted use, you will need to obtain permission directly from the copyright holder. To view a copy of this license, visit http://creativecommons.org/licenses/by/4.0/ (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Article
Zhang, Chenguang
Huo, Xiaoye
Zhu, Yini
Higginbotham, James N.
Cao, Zheng
Lu, Xin
Franklin, Jeffrey L.
Vickers, Kasey C.
Coffey, Robert J.
Senapati, Satyajyoti
Wang, Ceming
Chang, Hsueh-Chia
Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title_full Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title_fullStr Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title_full_unstemmed Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title_short Electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
title_sort electrodeposited magnetic nanoporous membrane for high-yield and high-throughput immunocapture of extracellular vesicles and lipoproteins
topic Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9741596/
https://www.ncbi.nlm.nih.gov/pubmed/36496485
http://dx.doi.org/10.1038/s42003-022-04321-9
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