Scaffolds for liver regeneration

Bibliographic Information
Authors: Hafiz E.; Bulutoglu B.; Jaramillo M.; Chen Y.; Kelangi S.S.; Uygun B.E.
Journal: Handbook of Tissue Engineering Scaffolds: Volume Two
Publisher: Elsevier
Publication Date: 2019
Pages: 741–764
DOI: 10.1016/B978-0-08-102561-1.00031-2
Scopus: View on Scopus
Document Type: Book chapter
Authors and Affiliations
Hafiz E., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States, Electron Microscopy Core Laboratory, Clinical Laboratory Research Department, Theodor Bilharz Research Institute (TBRI), Giza, Egypt; Bulutoglu B., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States; Jaramillo M., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States; Chen Y., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States; Kelangi S.S., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States; Uygun B.E., Center for Engineering in Medicine, Massachusetts General Hospital, Harvard Medical School and Shriners Hospitals for Children, Boston, MA, United States
Abstract
Liver is a highly metabolically active organ that has high oxygen and nutrient demands. Even though a healthy liver has the capacity to regenerate, damage to the organ may result in mortality if the hepatic function is not supported. Because the current treatment methods for liver failure are limited, tissue engineering has offered tools to develop alternative treatment options. One common aspect of tissue engineering approaches for liver regeneration is the use of either synthetic or natural materials to provide an environment that mimics the physiological conditions and architecture of the organ. Here, we provide background on the extracellular environment in the liver and summarize materials and fabrication methods used for scaffold fabrication that support liver regeneration. © 2019 Elsevier Ltd. All rights reserved.
Keywords
Biomaterials; Decellularization; Extracellular matrix; Freeze-drying; Hydrogel; Liver; Polymers; Regeneration; Scaffold
Citation Information
Scopus Citations: 2
For comprehensive information about the Theodor Bilharz Research Institute (TBRI), its institutional activities, scientific and research achievements, clinical and hospital services, and the diverse expertise offered through its 22 specialized research and clinical departments, as well as opportunities for professional training, specialized workshops, and scientific conferences, readers are invited to visit the Institute’s official website.
The website provides regularly updated information on the Institute’s latest news, research activities, scientific initiatives, clinical services, institutional programs, and academic and professional opportunities.
English Website: https://www.tbri.sci.eg/en/
Arabic Website: https://www.tbri.sci.eg/ar/
Prepared and Uploaded by:
Abdalla F. Abdalla
Electronic Portal Unit
