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Multicellular Co-Culture in Three-Dimensional Gelatin Methacryloyl Hydrogels for Liver Tissue Engineering.
- Source :
-
Molecules (Basel, Switzerland) [Molecules] 2019 May 07; Vol. 24 (9). Date of Electronic Publication: 2019 May 07. - Publication Year :
- 2019
-
Abstract
- Three-dimensional (3D) tissue models replicating liver architectures and functions are increasingly being needed for regenerative medicine. However, traditional studies are focused on establishing 2D environments for hepatocytes culture since it is challenging to recreate biodegradable 3D tissue-like architecture at a micro scale by using hydrogels. In this paper, we utilized a gelatin methacryloyl (GelMA) hydrogel as a matrix to construct 3D lobule-like microtissues for co-culture of hepatocytes and fibroblasts. GelMA hydrogel with high cytocompatibility and high structural fidelity was determined to fabricate hepatocytes encapsulated micromodules with central radial-type hole by photo-crosslinking through a digital micromirror device (DMD)-based microfluidic channel. The cellular micromodules were assembled through non-contact pick-up strategy relying on local fluid-based micromanipulation. Then the assembled micromodules were coated with fibroblast-laden GelMA, subsequently irradiated by ultraviolet for integration of the 3D lobule-like microtissues encapsulating multiple cell types. With long-term co-culture, the 3D lobule-like microtissues encapsulating hepatocytes and fibroblasts maintained over 90% cell viability. The liver function of albumin secretion was enhanced for the co-cultured 3D microtissues compared to the 3D microtissues encapsulating only hepatocytes. Experimental results demonstrated that 3D lobule-like microtissues fabricated by GelMA hydrogels capable of multicellular co-culture with high cell viability and liver function, which have huge potential for liver tissue engineering and regenerative medicine applications.
- Subjects :
- Cell Survival drug effects
Coculture Techniques
Fibroblasts chemistry
Fibroblasts drug effects
Gelatin chemistry
Gelatin pharmacology
Hep G2 Cells
Hepatocytes drug effects
Humans
Hydrogel, Polyethylene Glycol Dimethacrylate chemical synthesis
Hydrogel, Polyethylene Glycol Dimethacrylate pharmacology
Liver growth & development
Regenerative Medicine
Gelatin chemical synthesis
Hydrogel, Polyethylene Glycol Dimethacrylate chemistry
Liver drug effects
Tissue Engineering methods
Subjects
Details
- Language :
- English
- ISSN :
- 1420-3049
- Volume :
- 24
- Issue :
- 9
- Database :
- MEDLINE
- Journal :
- Molecules (Basel, Switzerland)
- Publication Type :
- Academic Journal
- Accession number :
- 31067670
- Full Text :
- https://doi.org/10.3390/molecules24091762