Cell sheet engineering provides a scaffold-free strategy for fabricating cohesive tissue constructs, but challenges remain in maintaining structural integrity and mimicking complex tissue architectures. This study demonstrated perfluorodecalin-based liquid-liquid interfaces, known for their inertness and stability, as a simple, and efficient platform for fabricating cell sheets. Using single cells, spheroids, and their combination, we evaluated methods to enhance sheet formation. Single cells formed cohesive sheets at high densities (4âÃâ10(6) cells/well) but exhibited limited long-term stability due to nutrient constraints. Spheroids formed robust sheets at lower densities (2âÃâ10(6) cells/well), whereas higher densities impaired fusion. The mixed approach combined the advantages of both, improving uniformity, mechanical stability, and spheroid fusion, while mimicking muscle-like structures with vascular networks. Additionally, the cell sheets retained adipogenic and chondrogenic differentiation potential, highlighting their functional viability. These findings establish liquid interfaces as a practical and versatile platform for tissue engineering, regenerative medicine, and in vitro modeling.
Enhanced cell sheet engineering through combination of single cells and spheroids on liquid interface using perfluorocarbon.
利用全氟碳将单细胞和球状体结合在液界面上,从而增强细胞片层工程
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作者:Park Ji Hye, Han Ji-Seok, Ann Eun-Jung, Kim Cho Yeon, Lee Byoung-Seok, Kang Ji Su, Song Sun-Sook, Lee Junhee, Kang Sun-Woong
| 期刊: | Journal of Tissue Engineering | 影响因子: | 7.000 |
| 时间: | 2025 | 起止号: | 2025 Jun 29; 16:20417314251350316 |
| doi: | 10.1177/20417314251350316 | 研究方向: | 细胞生物学 |
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