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Pancreatic Tissue-Derived Extracellular Matrix Bioink for Printing 3D Cell-Laden Pancreatic Tissue Constructs
Published on: December 13, 2019
Advances in printing biomaterials and living cells: implications for islet cell transplantation
Zhilian Yue1, Xiao Liu, Patrick T Coates
1aARC Centre of Excellence for Electromaterials Science, Intelligent Polymer Research Institute, AIIM Faculty, Innovation Campus, University of Wollongong, New South Wales bSchool of Medicine, Discipline of Medicine cThe Robinson Institute, Centre for Stem Cell Research, University of Adelaide dCentral Northern Adelaide Renal and Transplantation Service, Royal Adelaide Hospital, Adelaide, Australia.
Purpose Of Review:
Rapid advances in bioprinting have attracted the attention of the clinical world. The advent of printable, cytocompatible materials and appropriate hardware provides an unprecedented ability to design and create 3D structures throughout which living cells and bioactive components are strategically distributed. Here, we review those advances and present how they can be used to create new structures for more effective islet cell transplantation.
Recent Findings:
There is a need for improvements in the delivery vehicle for transplantable islet cells. Significant progress has been made in 3D printing of multicellular structures and vascularized structures and multiple bioactive molecules. Strategies for extending these recent findings to islet transplantation are discussed. More importantly, the first promising step, 3D printing human islets has recently been demonstrated.
Summary:
The advent of 3D bioprinting provides unprecedented opportunities for islet transplantation. Highlighting the capabilities of 3D bioprinting should also encourage clinicians to consider other areas appropriate for its use.

