Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells

Here, the authors present a pseudo-diamagnetophoresis mattertronic approach for programmable manipulation of label-free cells. Immersed in biocompatible ferrofluids, single cells are moved along linear negative micromagnetic patterns, switched at eclipse diode patterns and stored in potential wells.

Bibliographic Details
Main Authors: Sandhya Rani Goudu, Hyeonseol Kim, Xinghao Hu, Byeonghwa Lim, Kunwoo Kim, Sri Ramulu Torati, Hakan Ceylan, Devin Sheehan, Metin Sitti, CheolGi Kim
Format: Article
Language:English
Published: Nature Publishing Group 2021-05-01
Series:Nature Communications
Online Access:https://doi.org/10.1038/s41467-021-23251-4
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spelling doaj-4caba3648f6846c0a5d8686c330c62f12021-05-23T11:13:12ZengNature Publishing GroupNature Communications2041-17232021-05-0112111310.1038/s41467-021-23251-4Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cellsSandhya Rani Goudu0Hyeonseol Kim1Xinghao Hu2Byeonghwa Lim3Kunwoo Kim4Sri Ramulu Torati5Hakan Ceylan6Devin Sheehan7Metin Sitti8CheolGi Kim9Department of Emerging Materials Science, DGISTDepartment of Emerging Materials Science, DGISTPhysical Intelligence Department, Max Planck Institute for Intelligent SystemsDepartment of Emerging Materials Science, DGISTDepartment of Emerging Materials Science, DGISTDepartment of Emerging Materials Science, DGISTPhysical Intelligence Department, Max Planck Institute for Intelligent SystemsPhysical Intelligence Department, Max Planck Institute for Intelligent SystemsPhysical Intelligence Department, Max Planck Institute for Intelligent SystemsDepartment of Emerging Materials Science, DGISTHere, the authors present a pseudo-diamagnetophoresis mattertronic approach for programmable manipulation of label-free cells. Immersed in biocompatible ferrofluids, single cells are moved along linear negative micromagnetic patterns, switched at eclipse diode patterns and stored in potential wells.https://doi.org/10.1038/s41467-021-23251-4
collection DOAJ
language English
format Article
sources DOAJ
author Sandhya Rani Goudu
Hyeonseol Kim
Xinghao Hu
Byeonghwa Lim
Kunwoo Kim
Sri Ramulu Torati
Hakan Ceylan
Devin Sheehan
Metin Sitti
CheolGi Kim
spellingShingle Sandhya Rani Goudu
Hyeonseol Kim
Xinghao Hu
Byeonghwa Lim
Kunwoo Kim
Sri Ramulu Torati
Hakan Ceylan
Devin Sheehan
Metin Sitti
CheolGi Kim
Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
Nature Communications
author_facet Sandhya Rani Goudu
Hyeonseol Kim
Xinghao Hu
Byeonghwa Lim
Kunwoo Kim
Sri Ramulu Torati
Hakan Ceylan
Devin Sheehan
Metin Sitti
CheolGi Kim
author_sort Sandhya Rani Goudu
title Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
title_short Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
title_full Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
title_fullStr Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
title_full_unstemmed Mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
title_sort mattertronics for programmable manipulation and multiplex storage of pseudo-diamagnetic holes and label-free cells
publisher Nature Publishing Group
series Nature Communications
issn 2041-1723
publishDate 2021-05-01
description Here, the authors present a pseudo-diamagnetophoresis mattertronic approach for programmable manipulation of label-free cells. Immersed in biocompatible ferrofluids, single cells are moved along linear negative micromagnetic patterns, switched at eclipse diode patterns and stored in potential wells.
url https://doi.org/10.1038/s41467-021-23251-4
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