Assessment of Tilapia Skin Collagen for Biomedical Research Applications in Comparison with Mammalian Collagen
Abstract
:1. Introduction
2. Results
2.1. The Composition and Fibril Formation of the Tilapia Skin Collagen
2.2. The Effects of Tilapia Skin Collagen on Cell Adhesion, Proliferation, and Migration
2.3. Application of Tilapia Skin Collagen in Three-Dimensional (3D) Cell Culture
2.3.1. The MDCK 3D Culture Model
2.3.2. The Fibroblast-Induced Gel Contraction Model
2.3.3. The Tumor Spheroid Interfacial Invasiveness Model
2.4. The Effects of the Freeze-Dried FC Collagen Scaffold on Wound Healing
3. Discussion
4. Materials and Methods
4.1. Cell Culture
4.2. Collagen Solutions
4.3. SDS-PAGE
4.4. Collagen Fibril Formation
4.5. Cell Adhesion Assay
4.6. Cell Proliferation Assay
4.7. Cell Migration Assay
4.8. MDCK Cells in 3D Culture
4.9. Contractility Assay
4.10. Interfacial Invasiveness of Tumor Spheroid Assay
4.11. Fabrication of Collagen Scaffold and Scanning Electron Microscopy Observation
4.12. The Treatment of the Collagen Biomaterials on a Mouse Excisional Wound Model
4.13. Data Analysis
Supplementary Materials
Author Contributions
Funding
Institutional Review Board Statement
Informed Consent Statement
Data Availability Statement
Acknowledgments
Conflicts of Interest
References
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Huang, J.-Y.; Wong, T.-Y.; Tu, T.-Y.; Tang, M.-J.; Lin, H.-H.; Hsueh, Y.-Y. Assessment of Tilapia Skin Collagen for Biomedical Research Applications in Comparison with Mammalian Collagen. Molecules 2024, 29, 402. https://doi.org/10.3390/molecules29020402
Huang J-Y, Wong T-Y, Tu T-Y, Tang M-J, Lin H-H, Hsueh Y-Y. Assessment of Tilapia Skin Collagen for Biomedical Research Applications in Comparison with Mammalian Collagen. Molecules. 2024; 29(2):402. https://doi.org/10.3390/molecules29020402
Chicago/Turabian StyleHuang, Jyun-Yuan, Tzyy-Yue Wong, Ting-Yuan Tu, Ming-Jer Tang, Hsi-Hui Lin, and Yuan-Yu Hsueh. 2024. "Assessment of Tilapia Skin Collagen for Biomedical Research Applications in Comparison with Mammalian Collagen" Molecules 29, no. 2: 402. https://doi.org/10.3390/molecules29020402