Magnetic Levitation Assisted Biofabrication, Culture, and Manipulation of 3d Cellular Structures Using a Ring Magnet Based Setup

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Anıl İnevi, Müge
Delikoyun, Kerem
Meşe Özçivici, Gülistan
Tekin, Hüseyin Cumhur
Özçivici, Engin

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Yes

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Average
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Top 10%

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Abstract

Diamagnetic levitation is an emerging technology for remote manipulation of cells in cell and tissue level applications. Low-cost magnetic levitation configurations using permanent magnets are commonly composed of a culture chamber physically sandwiched between two block magnets that limit working volume and applicability. This work describes a single ring magnet-based magnetic levitation system to eliminate physical limitations for biofabrication. Developed configuration utilizes sample culture volume for construct size manipulation and long-term maintenance. Furthermore, our configuration enables convenient transfer of liquid or solid phases during the levitation. Before biofabrication, we first calibrated/ the platform for levitation with polymeric beads, considering the single cell density range of viable cells. By taking advantage of magnetic focusing and cellular self-assembly, millimeter-sized 3D structures were formed and maintained in the system allowing easy and on-site intervention in cell culture with an open operational space. We demonstrated that the levitation protocol could be adapted for levitation of various cell types (i.e., stem cell, adipocyte and cancer cell) representing cells of different densities by modifying the paramagnetic ion concentration that could be also reduced by manipulating the density of the medium. This technique allowed the manipulation and merging of separately formed 3D biological units, as well as the hybrid biofabrication with biopolymers. In conclusion, we believe that this platform will serve as an important tool in broad fields such as bottom-up tissue engineering, drug discovery and developmental biology.

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Keywords

Biofabrication, Cellular spheroids, Magnetic levitation, Scaffold free, Stem cells, Mice, Tissue Engineering, Spheroids, Cellular, Stem Cells, Magnets, Animals, Humans, Cell Culture Techniques, Three Dimensional, Equipment Design, Cell Line

Fields of Science

0301 basic medicine, 0303 health sciences, 03 medical and health sciences

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OpenCitations Citation Count
21

Volume

118

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Start Page

4771

End Page

4785
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CrossRef : 25

Scopus : 26

PubMed : 7

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Mendeley Readers : 42

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26

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Web of Science™ Citations

22

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Page Views

1054

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Downloads

348

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