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- Title
Correlation of the regenerative potential of dermal fibroblasts in 2D culture with the biological properties of fibroblast-derived tissue spheroids.
- Authors
Koudan, Elizaveta V.; Zorina, Alla I.; Levin, Aleksandr A.; Pereira, Frederico D. A. S.; Petrov, Stanislav V.; Karshieva, Saida Sh.; Kasyanov, Vladimir A.; Manturova, Natalya E.; Ustyugov, Andrey Yu.; Potekaev, Nikolay N.; Parfenov, Vladislav A.; Karalkin, Pavel A.; Khesuani, Yusef D.; Bulanova, Elena A.; Kopnin, Pavel B.; Isaev, Artur A.; Mironov, Vladimir A.; Zorin, Vadim L.
- Abstract
In situ 3D bioprinting is a new emerging therapeutic modality for treating human skin diseases. The tissue spheroids have been previously suggested as a powerful tool in rapidly expanding bioprinting technology. It has been demonstrated that the regenerative potential of human dermal fibroblasts could be quantitatively evaluated in 2D cell culture and confirmed after implantation in vivo. However, the development of unbiassed quantitative criteria of the regenerative potential of 3D tissue spheroids in vitro before their in situ bioprinting remains to be investigated. Here it has been demonstrated for the first time that specific correlations exist between the regenerative potential of human dermal fibroblasts cultured in vitro as 2D cell monolayer with biological properties of 3D tissue spheroids fabricated from these fibroblasts. In vitro assessment of biological properties included diameter, spreading and fusion kinetics, and biomechanical properties of 3D tissue spheroids. This comprehensive characterization could be used to predict tissue spheroids' regenerative potential in vivo.
- Subjects
BIOPRINTING; REGENERATION (Biology); TISSUES; VALUATION of real property; SKIN diseases; FIBROBLASTS; CELL culture
- Publication
Cell & Tissue Research, 2022, Vol 390, Issue 3, p453
- ISSN
0302-766X
- Publication type
Article
- DOI
10.1007/s00441-022-03690-1