20173D Printing and Additive ManufacturingRequires access

The Scalable Standardized Biofabrication of Tissue Spheroids from Different Cell Types Using Nonadhesive Technology

Elizaveta V. Koudan, Janetta V. Korneva, P. A. Karalkin, I. S. Gladkaya, Anna A. Gryadunova, Vladimir Mironov, Yusef D. Khesuani, Елена А. Буланова

Open publisher page 20 citations

Abstract

We suggest a straightforward procedure for biofabrication and initial characterization of tissue spheroids with optimal controllable parameters prepared from four different cell types using nonadhesive technology. Applying different immortalized and primary cells, namely HEK293, primary human fibroblasts (HF), primary sheep chondrocytes, and primary sheep osteoblasts, we have demonstrated the reproducibility and scalability of spheroid generation, the strong dependency of ultimate spheroid diameter on initial cell seeding density, and cell type. In addition, the spheroid viability is governed by cell derivation. In this study, we suggest a decision procedure to apply for any cell type one starts to work with to prepare a new type of tissue spheroids with predictable controllable optimal features suitable for high-quality standards in biofabrication and drug discovery.

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What this paper is about

We suggest a straightforward procedure for biofabrication and initial characterization of tissue spheroids with optimal controllable parameters prepared from four different cell types using nonadhesive technology. Applying different immortalized and primary cells, namely HEK293, primary human fibroblasts (HF), primary sheep chondrocytes, and primary sheep osteoblasts, we have demonstrated the reproducibility and scalability of spheroid generation, the strong dependency of ultimate spheroid diameter on initial cell seeding density, and cell type. In addition, the spheroid viability is governed by cell derivation. In this study, we suggest a decision procedure to apply for any cell type one starts to work with to prepare a new type of tissue spheroids with predictable controllable optimal features suitable for high-quality standards in biofabrication and drug discovery.

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Available abstract

We suggest a straightforward procedure for biofabrication and initial characterization of tissue spheroids with optimal controllable parameters prepared from four different cell types using nonadhesive technology. Applying different immortalized and primary cells, namely HEK293, primary human fibroblasts (HF), primary sheep chondrocytes, and primary sheep osteoblasts, we have demonstrated the reproducibility and scalability of spheroid generation, the strong dependency of ultimate spheroid diameter on initial cell seeding density, and cell type. In addition, the spheroid viability is governed by cell derivation. In this study, we suggest a decision procedure to apply for any cell type one starts to work with to prepare a new type of tissue spheroids with predictable controllable optimal features suitable for high-quality standards in biofabrication and drug discovery.

Key concepts: Spheroid, Biofabrication, Cell, HEK 293 cells, Cell type, Biomedical engineering, Cell culture, Nanotechnology

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