Fabrication of Tunable 3d Cellular Structures in High Volume Using Magnetic Levitation Guided Assembly
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Date
2021
Authors
Arslan Yıldız, Ahu
Journal Title
Journal ISSN
Volume Title
Publisher
American Chemical Society
Open Access Color
Green Open Access
Yes
OpenAIRE Downloads
OpenAIRE Views
Publicly Funded
No
Abstract
Tunable and reproducible size with high circularity is an important limitation to obtain three-dimensional (3D) cellular structures and spheroids in scaffold free tissue engineering approaches. Here, we present a facile methodology based on magnetic levitation (MagLev) to fabricate 3D cellular structures rapidly and easily in high-volume and low magnetic field. In this study, 3D cellular structures were fabricated using magnetic levitation directed assembly where cells are suspended and self-assembled by contactless magnetic manipulation in the presence of a paramagnetic agent. The effect of cell seeding density, culture time, and paramagnetic agent concentration on the formation of 3D cellular structures was evaluated for NIH/3T3 mouse fibroblast cells. In addition, magnetic levitation guided cellular assembly and 3D tumor spheroid formation was examined for five different cancer cell lines: MCF7 (human epithelial breast adenocarcinoma), MDA-MB-231 (human epithelial breast adenocarcinoma), SHSYSY (human bone-marrow neuroblastoma), PC-12 (rat adrenal gland pheochromocytoma), and HeLa (human epithelial cervix adenocarcinoma). Moreover, formation of a 3D coculture model was successfully observed by using MDA-MB-231 dsRED and MDA-MB-231 GFP cells. Taken together, these results indicate that the developed MagLev setup provides an easy and efficient way to fabricate 3D cellular structures and may be a feasible alternative to conventional methodologies for cellular/multicellular studies.
Description
Keywords
Magnetic levitation, Scaffold-free tissue engineering, 3D cell culture, 3D tumor spheroid, Contactless manipulation, assembly, Physiology, Magnetic Levitation Guided Assembly., Biophysics, 5Y, Biocompatible Materials, 3 D, Biochemistry, 3 D tumor spheroid formation, Imaging, Three-Dimensional, SH-SY, Cell Line, Tumor, Spheroids, Cellular, Materials Testing, Genetics, Animals, Humans, levitation, Particle Size, breast, Tunable 3 D Cellular Structures, Cancer, Pharmacology, NIH, cancer cell lines, MCF, Tissue Engineering, Tissue Scaffolds, epithelial cervix adenocarcinoma, 3 D coculture model, agent, methodology, Cell Biology, MDA-MB -231 dsRED, Coculture Techniques, Rats, tissue engineering approaches, MagLev, MDA-MB -231 GFP cells, Magnetic Fields, PC, Physical Sciences not elsewhere classified, cell seeding density, Biotechnology
Fields of Science
0301 basic medicine, 03 medical and health sciences
Citation
WoS Q
Q2
Scopus Q
Q2

OpenCitations Citation Count
13
Source
ACS Applied Bio Materials
Volume
4
Issue
2
Start Page
1794
End Page
1802
PlumX Metrics
Citations
CrossRef : 6
Scopus : 13
PubMed : 3
Captures
Mendeley Readers : 44
SCOPUS™ Citations
13
checked on Apr 27, 2026
Web of Science™ Citations
16
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Page Views
839
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Downloads
119
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