Scaffold-Free Biofabrication of Adipocyte Structures With Magnetic Levitation

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Date

2021

Journal Title

Journal ISSN

Volume Title

Publisher

John Wiley and Sons Inc.

Open Access Color

Green Open Access

Yes

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Publicly Funded

No
Impulse
Top 10%
Influence
Average
Popularity
Top 10%

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Abstract

Tissue engineering research aims to repair the form and/or function of impaired tissues. Tissue engineering studies mostly rely on scaffold-based techniques. However, these techniques have certain challenges, such as the selection of proper scaffold material, including mechanical properties, sterilization, and fabrication processes. As an alternative, we propose a novel scaffold-free adipose tissue biofabrication technique based on magnetic levitation. In this study, a label-free magnetic levitation technique was used to form three-dimensional (3D) scaffold-free adipocyte structures with various fabrication strategies in a microcapillary-based setup. Adipogenic-differentiated 7F2 cells and growth D1 ORL UVA stem cells were used as model cells. The morphological properties of the 3D structures of single and cocultured cells were analyzed. The developed procedure leads to the formation of different patterns of single and cocultured adipocytes without a scaffold. Our results indicated that adipocytes formed loose structures while growth cells were tightly packed during 3D culture in the magnetic levitation platform. This system has potential for ex vivo modeling of adipose tissue for drug testing and transplantation applications for cell therapy in soft tissue damage. Also, it will be possible to extend this technique to other cell and tissue types.

Description

PubMed: 33205833

Keywords

Adipose tissue, Bone marrow stem cells, Magnetic levitation, Tissue engineering, Single cell studies, Adipogenesis, Magnetic Fields, Tissue Engineering, Tissue Scaffolds, A549 Cells, Adipocytes, Humans, Cell Differentiation

Fields of Science

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

Citation

WoS Q

Q2

Scopus Q

Q2
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OpenCitations Citation Count
22

Source

Biotechnology and Bioengineering

Volume

118

Issue

Start Page

1127

End Page

1140
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Citations

CrossRef : 23

Scopus : 24

PubMed : 7

Captures

Mendeley Readers : 47

SCOPUS™ Citations

24

checked on Apr 27, 2026

Web of Science™ Citations

22

checked on Apr 27, 2026

Page Views

6446

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Downloads

224

checked on Apr 27, 2026

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1.5033246

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