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Subaqueous 3D stem cell spheroid levitation culture using anti-gravity bioreactor based on sound wave superpositionopen accessSubaqueous 3D stem cell spheroid levitation culture using anti-gravity bioreactor based on sound wave superposition

Authors
Park, Jung HwanLee, Ju-RoPark, SungkwonKim, Yu-JinYoon, Jeong-KeePark, Hyun SuHyun, JiyuJoung, Yoon KiLee, Tae IlBhang, Suk Ho
Issue Date
May-2023
Publisher
BioMed Central Ltd
Keywords
Acoustic levitation; Anti-gravity bioreactor; Hindlimb ischemia; Human mesenchymal stem cell spheroid
Citation
Biomaterials Research, v.27, no.1, pp 1397 - 1410
Pages
14
Journal Title
Biomaterials Research
Volume
27
Number
1
Start Page
1397
End Page
1410
URI
https://scholarworks.bwise.kr/cau/handle/2019.sw.cau/70107
DOI
10.1186/s40824-023-00383-w
ISSN
1226-4601
2055-7124
Abstract
Background: Recently, various studies have revealed that 3D cell spheroids have several advantages over 2D cells in stem cell culture. However, conventional 3D spheroid culture methods have some disadvantages and limitations such as time required for spheroid formation and complexity of the experimental process. Here, we used acoustic levitation as cell culture platform to overcome the limitation of conventional 3D culture methods. Methods: In our anti-gravity bioreactor, continuous standing sonic waves created pressure field for 3D culture of human mesenchymal stem cells (hMSCs). hMSCs were trapped and aggerated in pressure field and consequently formed spheroids. The structure, viability, gene and protein expression of spheroids formed in the anti-gravity bioreactor were analyzed by electron microscope, immunostaining, polymerase chain reaction, and western blot. We injected hMSC spheroids fabricated by anti-gravity bioreactor into the mouse hindlimb ischemia model. Limb salvage was quantified to evaluate therapeutic efficacy of hMSC spheroids. Results: The acoustic levitation in anti-gravity bioreactor made spheroids faster and more compact compared to the conventional hanging drop method, which resulted in the upregulation of angiogenic paracrine factors of hMSCs, such as vascular endothelial growth factor and angiopoietin 2. Injected hMSCs spheroids cultured in the anti-gravity bioreactor exhibited improved therapeutic efficacy, including the degree of limb salvage, capillary formation, and attenuation of fibrosis and inflammation, for mouse hindlimb ischemia model compared to spheroids formed by the conventional hanging drop method. Conclusion: Our stem cell culture system using acoustic levitation will be proposed as a new platform for the future 3D cell culture system. Graphical Abstract: [Figure not available: see fulltext.] © 2023, The Author(s).
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생명공학대학 (시스템생명공학과)
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