Albumin-based hydrogels for regenerative engineering and cell transplantation
John Ong1,2, Junzhe Zhao1, Alexander W Justin1
1Department of Engineering, University of Cambridge, Cambridge, UK.
Abstract:
Albumin, the most abundant plasma protein in mammals, is a versatile and easily obtainable biomaterial. It is pH and temperature responsive, dissolvable in high concentrations and gels readily in defined conditions. This versatility, together with its inexpensiveness and biocompatibility, makes albumin an attractive biomaterial for biomedical research and therapeutics. So far, clinical research in albumin has centered mainly on its use as a carrier molecule or nanoparticle to improve drug pharmacokinetics and delivery to target sites. In contrast, research in albumin-based hydrogels is less established albeit growing in interest over recent years. In this minireview, we report current literature and critically discuss the synthesis, mechanical properties, biological effects and uses, biodegradability and cost of albumin hydrogels as a xeno-free, customizable, and transplantable construct for tissue engineering and regenerative medicine.
Related Concept Videos
07:40Co-transplantation of Human Ovarian Tissue with Engineered Endothelial Cells: A Cell-based Strategy Combining Accelerated Perfusion with Direct Paracrine Delivery
10:18Encapsulation of Cardiomyocytes in a Fibrin Hydrogel for Cardiac Tissue Engineering
09:37Cellular Encapsulation in 3D Hydrogels for Tissue Engineering
09:19Intramyocardial Transplantation of MSC-Loading Injectable Hydrogels after Myocardial Infarction in a Murine Model
Developing a Micro-Tissue-Engineered Neural Network Using a Hydrogel-Based Micro-column
09:47FRET Imaging in Three-dimensional Hydrogels


